============================================================ | | | Crystallography & NMR System (CNS) | | CNSsolve | | | ============================================================ Version: 1.1 Status: Developmental version ============================================================ Written by: A.T.Brunger, P.D.Adams, G.M.Clore, W.L.DeLano, P.Gros, R.W.Grosse-Kunstleve, J.-S.Jiang, J.Kuszewski, M.Nilges, N.S.Pannu, R.J.Read, L.M.Rice, T.Simonson, G.L.Warren. Copyright (c) 1997-1999 Yale University ============================================================ Running on machine: cesg-master.biochem.wisc.edu (Linux,32-bit) Program started by: volkman Program started at: 01:16:53 on 11-Sep-04 ============================================================ FFT3C: Using FFTPACK4.1 CNSsolve>define( DEFINE>{* selection of atoms other than hydrogens for which coordinates DEFINE> will be generated *} DEFINE>{* to generate coordinates for all unknown atoms use: (not(known)) *} DEFINE>{===>} atom_build=(not(known)); DEFINE>{============================= output files ================================} DEFINE> DEFINE>{* input coordinate file *} DEFINE>{===>} coordinate_infile="1xxx_14.pdb"; DEFINE> DEFINE>{* output coordinate file *} DEFINE>{===>} coordinate_outfile="1xxx_14_cns.pdb"; DEFINE>) CNSsolve> CNSsolve> checkversion 1.1 Program version= 1.1 File version= 1.1 CNSsolve> CNSsolve> evaluate ($log_level=verbose) Assuming literal string "VERBOSE" EVALUATE: symbol $LOG_LEVEL set to "VERBOSE" (string) CNSsolve> evaluate ($par_nonbonded="PROLSQ") EVALUATE: symbol $PAR_NONBONDED set to "PROLSQ" (string) CNSsolve> CNSsolve> !@generateProtonsJFD.inp CNSsolve> CNSsolve>{===========================================================================} CNSsolve>{ things below this line do not need to be changed } CNSsolve>{===========================================================================} CNSsolve> CNSsolve>remarks changed Tue Sep 2 09:48:07 CDT 2003 CNSsolve>remarks by jfd to include a fes residue CNSsolve> CNSsolve>!@generate_tmoc.inp CNSsolve> CNSsolve>topology reset end CNSsolve>structure reset end Status of internal molecular topology database: -> NATOM= 0(MAXA= 40000) NBOND= 0(MAXB= 40000) -> NTHETA= 0(MAXT= 80000) NGRP= 0(MAXGRP= 40000) -> NPHI= 0(MAXP= 80000) NIMPHI= 0(MAXIMP= 40000) -> NNB= 0(MAXNB= 40000) CNSsolve> CNSsolve>topology RTFRDR>{===>} @TOPPAR:topallhdg5.3.pro ASSFIL: file /u/volkman/waterrefine/toppar/topallhdg5.3.pro opened. RTFRDR>remark file topallhdg.pro version 5.3 date 23-Sept-02 RTFRDR>remark for file parallhdg.pro version 5.3 date 13-Feb-02 or later RTFRDR>remark Geometric energy function parameters for distance geometry and RTFRDR>remark simulated annealing. RTFRDR>remark Author: Michael Nilges, EMBL Heidelberg; Institut Pasteur, Paris RTFRDR>remark This file contains modifications from M. Williams, UCL London RTFRDR>remark Last modification 16-Sept-02 RTFRDR> RTFRDR>set echo off message off end RTFRDR>end CNSsolve> CNSsolve>! no chain id. CNSsolve>segment name=" " SEGMENT> chain CHAIN> @TOPPAR:topallhdg5.3.pep CHAIN>REMARKS TOPH19.pep -MACRO for protein sequence CHAIN>SET ECHO=FALSE END CHAIN> sequence SEQUENCE> @1xxx.seq SEQUENCE>MET SEQUence-element (terminate with END) =GLY SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =MET SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =GLY SEQUence-element (terminate with END) =GLN SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =ILE SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =CYS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =TRP SEQUence-element (terminate with END) =ASN SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =GLN SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =GLN SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =ASN SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =TRP SEQUence-element (terminate with END) =CYS SEQUence-element (terminate with END) =GLY SEQUence-element (terminate with END) =PRO SEQUence-element (terminate with END) =CYS SEQUence-element (terminate with END) =ARG SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =ILE SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =PRO SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =PRO SEQUence-element (terminate with END) =ASN SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =TRP SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =ILE SEQUence-element (terminate with END) =GLN SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =MET SEQUence-element (terminate with END) =PRO SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =MET SEQUence-element (terminate with END) =PHE SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =GLY SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =ILE SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =VAL SEQUence-element (terminate with END) =GLY SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =ASP SEQUence-element (terminate with END) =GLU SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =GLN SEQUence-element (terminate with END) =SER SEQUence-element (terminate with END) =THR SEQUence-element (terminate with END) =ILE SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) =LYS SEQUence-element (terminate with END) =HIS SEQUence-element (terminate with END) =LEU SEQUence-element (terminate with END) =ALA SEQUence-element (terminate with END) = end SEGMNT: 124 residues were inserted into segment " " CHAIN> end SEGMENT>end Status of internal molecular topology database: -> NATOM= 1962(MAXA= 40000) NBOND= 1986(MAXB= 40000) -> NTHETA= 3608(MAXT= 80000) NGRP= 126(MAXGRP= 40000) -> NPHI= 3136(MAXP= 80000) NIMPHI= 1032(MAXIMP= 40000) -> NNB= 738(MAXNB= 40000) CNSsolve> CNSsolve>! removes the hydrogen on the cys-en CNSsolve>! and changes the atom type from SH1E to S. CNSsolve>patch DISU reference=1=( resid 50 ) PATCH> reference=2=( resid 53 ) PATCH> end Status of internal molecular topology database: -> NATOM= 1960(MAXA= 40000) NBOND= 1985(MAXB= 40000) -> NTHETA= 3608(MAXT= 80000) NGRP= 128(MAXGRP= 40000) -> NPHI= 3142(MAXP= 80000) NIMPHI= 1032(MAXIMP= 40000) -> NNB= 738(MAXNB= 40000) CNSsolve> CNSsolve>! turn peptide from trans to cis CNSsolve>patch CISP reference=nil=( resid 92 ) end Status of internal molecular topology database: -> NATOM= 1960(MAXA= 40000) NBOND= 1985(MAXB= 40000) -> NTHETA= 3608(MAXT= 80000) NGRP= 128(MAXGRP= 40000) -> NPHI= 3142(MAXP= 80000) NIMPHI= 1032(MAXIMP= 40000) -> NNB= 738(MAXNB= 40000) CNSsolve> CNSsolve>coor @&coordinate_infile COOR>HEADER Structures from CYANA 07-09-2004 COOR>REMARK model 14 COOR>ATOM 2926 N MET A 1 1.325 0.000 0.000 1.00 0.00 %READC-ERR: atom 1 MET HN not found in molecular structure %READC-ERR: atom 1 MET 2HB not found in molecular structure %READC-ERR: atom 1 MET 3HB not found in molecular structure %READC-ERR: atom 1 MET QB not found in molecular structure %READC-ERR: atom 1 MET 2HG not found in molecular structure %READC-ERR: atom 1 MET 3HG not found in molecular structure %READC-ERR: atom 1 MET QG not found in molecular structure %READC-ERR: atom 1 MET QE not found in molecular structure %READC-ERR: atom 1 MET 1HE not found in molecular structure %READC-ERR: atom 1 MET 2HE not found in molecular structure %READC-ERR: atom 1 MET 3HE not found in molecular structure %READC-ERR: atom 2 GLY 1HA not found in molecular structure %READC-ERR: atom 2 GLY 2HA not found in molecular structure %READC-ERR: atom 2 GLY QA not found in molecular structure %READC-ERR: atom 3 HIS 2HB not found in molecular structure %READC-ERR: atom 3 HIS 3HB not found in molecular structure %READC-ERR: atom 3 HIS QB not found in molecular structure %READC-ERR: atom 4 HIS 2HB not found in molecular structure %READC-ERR: atom 4 HIS 3HB not found in molecular structure %READC-ERR: atom 4 HIS QB not found in molecular structure %READC-ERR: atom 5 HIS 2HB not found in molecular structure %READC-ERR: atom 5 HIS 3HB not found in molecular structure %READC-ERR: atom 5 HIS QB not found in molecular structure %READC-ERR: atom 6 HIS 2HB not found in molecular structure %READC-ERR: atom 6 HIS 3HB not found in molecular structure %READC-ERR: atom 6 HIS QB not found in molecular structure %READC-ERR: atom 7 HIS 2HB not found in molecular structure %READC-ERR: atom 7 HIS 3HB not found in molecular structure %READC-ERR: atom 7 HIS QB not found in molecular structure %READC-ERR: atom 8 HIS 2HB not found in molecular structure %READC-ERR: atom 8 HIS 3HB not found in molecular structure %READC-ERR: atom 8 HIS QB not found in molecular structure %READC-ERR: atom 9 LEU 2HB not found in molecular structure %READC-ERR: atom 9 LEU 3HB not found in molecular structure %READC-ERR: atom 9 LEU QB not found in molecular structure %READC-ERR: atom 9 LEU QD1 not found in molecular structure %READC-ERR: atom 9 LEU QD2 not found in molecular structure %READC-ERR: atom 9 LEU 1HD1 not found in molecular structure %READC-ERR: atom 9 LEU 2HD1 not found in molecular structure %READC-ERR: atom 9 LEU 3HD1 not found in molecular structure %READC-ERR: atom 9 LEU 1HD2 not found in molecular structure %READC-ERR: atom 9 LEU 2HD2 not found in molecular structure %READC-ERR: atom 9 LEU 3HD2 not found in molecular structure %READC-ERR: atom 9 LEU QQD not found in molecular structure %READC-ERR: atom 10 GLU 2HB not found in molecular structure %READC-ERR: atom 10 GLU 3HB not found in molecular structure %READC-ERR: atom 10 GLU QB not found in molecular structure %READC-ERR: atom 10 GLU 2HG not found in molecular structure %READC-ERR: atom 10 GLU 3HG not found in molecular structure %READC-ERR: atom 10 GLU QG not found in molecular structure %READC-ERR: atom 11 MET 2HB not found in molecular structure %READC-ERR: atom 11 MET 3HB not found in molecular structure %READC-ERR: atom 11 MET QB not found in molecular structure %READC-ERR: atom 11 MET 2HG not found in molecular structure %READC-ERR: atom 11 MET 3HG not found in molecular structure %READC-ERR: atom 11 MET QG not found in molecular structure %READC-ERR: atom 11 MET QE not found in molecular structure %READC-ERR: atom 11 MET 1HE not found in molecular structure %READC-ERR: atom 11 MET 2HE not found in molecular structure %READC-ERR: atom 11 MET 3HE not found in molecular structure %READC-ERR: atom 12 ALA QB not found in molecular structure %READC-ERR: atom 12 ALA 1HB not found in molecular structure %READC-ERR: atom 12 ALA 2HB not found in molecular structure %READC-ERR: atom 12 ALA 3HB not found in molecular structure %READC-ERR: atom 13 SER 2HB not found in molecular structure %READC-ERR: atom 13 SER 3HB not found in molecular structure %READC-ERR: atom 13 SER QB not found in molecular structure %READC-ERR: atom 14 GLU 2HB not found in molecular structure %READC-ERR: atom 14 GLU 3HB not found in molecular structure %READC-ERR: atom 14 GLU QB not found in molecular structure %READC-ERR: atom 14 GLU 2HG not found in molecular structure %READC-ERR: atom 14 GLU 3HG not found in molecular structure %READC-ERR: atom 14 GLU QG not found in molecular structure %READC-ERR: atom 15 GLU 2HB not found in molecular structure %READC-ERR: atom 15 GLU 3HB not found in molecular structure %READC-ERR: atom 15 GLU QB not found in molecular structure %READC-ERR: atom 15 GLU 2HG not found in molecular structure %READC-ERR: atom 15 GLU 3HG not found in molecular structure %READC-ERR: atom 15 GLU QG not found in molecular structure %READC-ERR: atom 16 GLY 1HA not found in molecular structure %READC-ERR: atom 16 GLY 2HA not found in molecular structure %READC-ERR: atom 16 GLY QA not found in molecular structure %READC-ERR: atom 17 GLN 2HB not found in molecular structure %READC-ERR: atom 17 GLN 3HB not found in molecular structure %READC-ERR: atom 17 GLN QB not found in molecular structure %READC-ERR: atom 17 GLN 2HG not found in molecular structure %READC-ERR: atom 17 GLN 3HG not found in molecular structure %READC-ERR: atom 17 GLN QG not found in molecular structure %READC-ERR: atom 17 GLN 1HE2 not found in molecular structure %READC-ERR: atom 17 GLN 2HE2 not found in molecular structure %READC-ERR: atom 17 GLN QE2 not found in molecular structure %READC-ERR: atom 18 VAL QG1 not found in molecular structure %READC-ERR: atom 18 VAL QG2 not found in molecular structure %READC-ERR: atom 18 VAL 1HG1 not found in molecular structure %READC-ERR: atom 18 VAL 2HG1 not found in molecular structure %READC-ERR: atom 18 VAL 3HG1 not found in molecular structure %READC-ERR: atom 18 VAL 1HG2 not found in molecular structure %READC-ERR: atom 18 VAL 2HG2 not found in molecular structure %READC-ERR: atom 18 VAL 3HG2 not found in molecular structure %READC-ERR: atom 18 VAL QQG not found in molecular structure %READC-ERR: atom 19 ILE QG2 not found in molecular structure %READC-ERR: atom 19 ILE 1HG2 not found in molecular structure %READC-ERR: atom 19 ILE 2HG2 not found in molecular structure %READC-ERR: atom 19 ILE 3HG2 not found in molecular structure %READC-ERR: atom 19 ILE 2HG1 not found in molecular structure %READC-ERR: atom 19 ILE 3HG1 not found in molecular structure %READC-ERR: atom 19 ILE QG1 not found in molecular structure %READC-ERR: atom 19 ILE QD1 not found in molecular structure %READC-ERR: atom 19 ILE 1HD1 not found in molecular structure %READC-ERR: atom 19 ILE 2HD1 not found in molecular structure %READC-ERR: atom 19 ILE 3HD1 not found in molecular structure %READC-ERR: atom 20 ALA QB not found in molecular structure %READC-ERR: atom 20 ALA 1HB not found in molecular structure %READC-ERR: atom 20 ALA 2HB not found in molecular structure %READC-ERR: atom 20 ALA 3HB not found in molecular structure %READC-ERR: atom 21 CYS 2HB not found in molecular structure %READC-ERR: atom 21 CYS 3HB not found in molecular structure %READC-ERR: atom 21 CYS QB not found in molecular structure %READC-ERR: atom 22 HIS 2HB not found in molecular structure %READC-ERR: atom 22 HIS 3HB not found in molecular structure %READC-ERR: atom 22 HIS QB not found in molecular structure %READC-ERR: atom 23 THR QG2 not found in molecular structure %READC-ERR: atom 23 THR 1HG2 not found in molecular structure %READC-ERR: atom 23 THR 2HG2 not found in molecular structure %READC-ERR: atom 23 THR 3HG2 not found in molecular structure %READC-ERR: atom 24 VAL QG1 not found in molecular structure %READC-ERR: atom 24 VAL QG2 not found in molecular structure %READC-ERR: atom 24 VAL 1HG1 not found in molecular structure %READC-ERR: atom 24 VAL 2HG1 not found in molecular structure %READC-ERR: atom 24 VAL 3HG1 not found in molecular structure %READC-ERR: atom 24 VAL 1HG2 not found in molecular structure %READC-ERR: atom 24 VAL 2HG2 not found in molecular structure %READC-ERR: atom 24 VAL 3HG2 not found in molecular structure %READC-ERR: atom 24 VAL QQG not found in molecular structure %READC-ERR: atom 25 GLU 2HB not found in molecular structure %READC-ERR: atom 25 GLU 3HB not found in molecular structure %READC-ERR: atom 25 GLU QB not found in molecular structure %READC-ERR: atom 25 GLU 2HG not found in molecular structure %READC-ERR: atom 25 GLU 3HG not found in molecular structure %READC-ERR: atom 25 GLU QG not found in molecular structure %READC-ERR: atom 26 THR QG2 not found in molecular structure %READC-ERR: atom 26 THR 1HG2 not found in molecular structure %READC-ERR: atom 26 THR 2HG2 not found in molecular structure %READC-ERR: atom 26 THR 3HG2 not found in molecular structure %READC-ERR: atom 27 TRP 2HB not found in molecular structure %READC-ERR: atom 27 TRP 3HB not found in molecular structure %READC-ERR: atom 27 TRP QB not found in molecular structure %READC-ERR: atom 28 ASN 2HB not found in molecular structure %READC-ERR: atom 28 ASN 3HB not found in molecular structure %READC-ERR: atom 28 ASN QB not found in molecular structure %READC-ERR: atom 28 ASN 1HD2 not found in molecular structure %READC-ERR: atom 28 ASN 2HD2 not found in molecular structure %READC-ERR: atom 28 ASN QD2 not found in molecular structure %READC-ERR: atom 29 GLU 2HB not found in molecular structure %READC-ERR: atom 29 GLU 3HB not found in molecular structure %READC-ERR: atom 29 GLU QB not found in molecular structure %READC-ERR: atom 29 GLU 2HG not found in molecular structure %READC-ERR: atom 29 GLU 3HG not found in molecular structure %READC-ERR: atom 29 GLU QG not found in molecular structure %READC-ERR: atom 30 GLN 2HB not found in molecular structure %READC-ERR: atom 30 GLN 3HB not found in molecular structure %READC-ERR: atom 30 GLN QB not found in molecular structure %READC-ERR: atom 30 GLN 2HG not found in molecular structure %READC-ERR: atom 30 GLN 3HG not found in molecular structure %READC-ERR: atom 30 GLN QG not found in molecular structure %READC-ERR: atom 30 GLN 1HE2 not found in molecular structure %READC-ERR: atom 30 GLN 2HE2 not found in molecular structure %READC-ERR: atom 30 GLN QE2 not found in molecular structure %READC-ERR: atom 31 LEU 2HB not found in molecular structure %READC-ERR: atom 31 LEU 3HB not found in molecular structure %READC-ERR: atom 31 LEU QB not found in molecular structure %READC-ERR: atom 31 LEU QD1 not found in molecular structure %READC-ERR: atom 31 LEU QD2 not found in molecular structure %READC-ERR: atom 31 LEU 1HD1 not found in molecular structure %READC-ERR: atom 31 LEU 2HD1 not found in molecular structure %READC-ERR: atom 31 LEU 3HD1 not found in molecular structure %READC-ERR: atom 31 LEU 1HD2 not found in molecular structure %READC-ERR: atom 31 LEU 2HD2 not found in molecular structure %READC-ERR: atom 31 LEU 3HD2 not found in molecular structure %READC-ERR: atom 31 LEU QQD not found in molecular structure %READC-ERR: atom 32 GLN 2HB not found in molecular structure %READC-ERR: atom 32 GLN 3HB not found in molecular structure %READC-ERR: atom 32 GLN QB not found in molecular structure %READC-ERR: atom 32 GLN 2HG not found in molecular structure %READC-ERR: atom 32 GLN 3HG not found in molecular structure %READC-ERR: atom 32 GLN QG not found in molecular structure %READC-ERR: atom 32 GLN 1HE2 not found in molecular structure %READC-ERR: atom 32 GLN 2HE2 not found in molecular structure %READC-ERR: atom 32 GLN QE2 not found in molecular structure %READC-ERR: atom 33 LYS 2HB not found in molecular structure %READC-ERR: atom 33 LYS 3HB not found in molecular structure %READC-ERR: atom 33 LYS QB not found in molecular structure %READC-ERR: atom 33 LYS 2HG not found in molecular structure %READC-ERR: atom 33 LYS 3HG not found in molecular structure %READC-ERR: atom 33 LYS QG not found in molecular structure %READC-ERR: atom 33 LYS 2HD not found in molecular structure %READC-ERR: atom 33 LYS 3HD not found in molecular structure %READC-ERR: atom 33 LYS QD not found in molecular structure %READC-ERR: atom 33 LYS 2HE not found in molecular structure %READC-ERR: atom 33 LYS 3HE not found in molecular structure %READC-ERR: atom 33 LYS QE not found in molecular structure %READC-ERR: atom 33 LYS 1HZ not found in molecular structure %READC-ERR: atom 33 LYS 2HZ not found in molecular structure %READC-ERR: atom 33 LYS 3HZ not found in molecular structure %READC-ERR: atom 33 LYS QZ not found in molecular structure %READC-ERR: atom 34 ALA QB not found in molecular structure %READC-ERR: atom 34 ALA 1HB not found in molecular structure %READC-ERR: atom 34 ALA 2HB not found in molecular structure %READC-ERR: atom 34 ALA 3HB not found in molecular structure %READC-ERR: atom 35 ASN 2HB not found in molecular structure %READC-ERR: atom 35 ASN 3HB not found in molecular structure %READC-ERR: atom 35 ASN QB not found in molecular structure %READC-ERR: atom 35 ASN 1HD2 not found in molecular structure %READC-ERR: atom 35 ASN 2HD2 not found in molecular structure %READC-ERR: atom 35 ASN QD2 not found in molecular structure %READC-ERR: atom 36 GLU 2HB not found in molecular structure %READC-ERR: atom 36 GLU 3HB not found in molecular structure %READC-ERR: atom 36 GLU QB not found in molecular structure %READC-ERR: atom 36 GLU 2HG not found in molecular structure %READC-ERR: atom 36 GLU 3HG not found in molecular structure %READC-ERR: atom 36 GLU QG not found in molecular structure %READC-ERR: atom 37 SER 2HB not found in molecular structure %READC-ERR: atom 37 SER 3HB not found in molecular structure %READC-ERR: atom 37 SER QB not found in molecular structure %READC-ERR: atom 38 LYS 2HB not found in molecular structure %READC-ERR: atom 38 LYS 3HB not found in molecular structure %READC-ERR: atom 38 LYS QB not found in molecular structure %READC-ERR: atom 38 LYS 2HG not found in molecular structure %READC-ERR: atom 38 LYS 3HG not found in molecular structure %READC-ERR: atom 38 LYS QG not found in molecular structure %READC-ERR: atom 38 LYS 2HD not found in molecular structure %READC-ERR: atom 38 LYS 3HD not found in molecular structure %READC-ERR: atom 38 LYS QD not found in molecular structure %READC-ERR: atom 38 LYS 2HE not found in molecular structure %READC-ERR: atom 38 LYS 3HE not found in molecular structure %READC-ERR: atom 38 LYS QE not found in molecular structure %READC-ERR: atom 38 LYS 1HZ not found in molecular structure %READC-ERR: atom 38 LYS 2HZ not found in molecular structure %READC-ERR: atom 38 LYS 3HZ not found in molecular structure %READC-ERR: atom 38 LYS QZ not found in molecular structure %READC-ERR: atom 39 THR QG2 not found in molecular structure %READC-ERR: atom 39 THR 1HG2 not found in molecular structure %READC-ERR: atom 39 THR 2HG2 not found in molecular structure %READC-ERR: atom 39 THR 3HG2 not found in molecular structure %READC-ERR: atom 40 LEU 2HB not found in molecular structure %READC-ERR: atom 40 LEU 3HB not found in molecular structure %READC-ERR: atom 40 LEU QB not found in molecular structure %READC-ERR: atom 40 LEU QD1 not found in molecular structure %READC-ERR: atom 40 LEU QD2 not found in molecular structure %READC-ERR: atom 40 LEU 1HD1 not found in molecular structure %READC-ERR: atom 40 LEU 2HD1 not found in molecular structure %READC-ERR: atom 40 LEU 3HD1 not found in molecular structure %READC-ERR: atom 40 LEU 1HD2 not found in molecular structure %READC-ERR: atom 40 LEU 2HD2 not found in molecular structure %READC-ERR: atom 40 LEU 3HD2 not found in molecular structure %READC-ERR: atom 40 LEU QQD not found in molecular structure %READC-ERR: atom 41 VAL QG1 not found in molecular structure %READC-ERR: atom 41 VAL QG2 not found in molecular structure %READC-ERR: atom 41 VAL 1HG1 not found in molecular structure %READC-ERR: atom 41 VAL 2HG1 not found in molecular structure %READC-ERR: atom 41 VAL 3HG1 not found in molecular structure %READC-ERR: atom 41 VAL 1HG2 not found in molecular structure %READC-ERR: atom 41 VAL 2HG2 not found in molecular structure %READC-ERR: atom 41 VAL 3HG2 not found in molecular structure %READC-ERR: atom 41 VAL QQG not found in molecular structure %READC-ERR: atom 42 VAL QG1 not found in molecular structure %READC-ERR: atom 42 VAL QG2 not found in molecular structure %READC-ERR: atom 42 VAL 1HG1 not found in molecular structure %READC-ERR: atom 42 VAL 2HG1 not found in molecular structure %READC-ERR: atom 42 VAL 3HG1 not found in molecular structure %READC-ERR: atom 42 VAL 1HG2 not found in molecular structure %READC-ERR: atom 42 VAL 2HG2 not found in molecular structure %READC-ERR: atom 42 VAL 3HG2 not found in molecular structure %READC-ERR: atom 42 VAL QQG not found in molecular structure %READC-ERR: atom 43 VAL QG1 not found in molecular structure %READC-ERR: atom 43 VAL QG2 not found in molecular structure %READC-ERR: atom 43 VAL 1HG1 not found in molecular structure %READC-ERR: atom 43 VAL 2HG1 not found in molecular structure %READC-ERR: atom 43 VAL 3HG1 not found in molecular structure %READC-ERR: atom 43 VAL 1HG2 not found in molecular structure %READC-ERR: atom 43 VAL 2HG2 not found in molecular structure %READC-ERR: atom 43 VAL 3HG2 not found in molecular structure %READC-ERR: atom 43 VAL QQG not found in molecular structure %READC-ERR: atom 44 ASP 2HB not found in molecular structure %READC-ERR: atom 44 ASP 3HB not found in molecular structure %READC-ERR: atom 44 ASP QB not found in molecular structure %READC-ERR: atom 45 PHE 2HB not found in molecular structure %READC-ERR: atom 45 PHE 3HB not found in molecular structure %READC-ERR: atom 45 PHE QB not found in molecular structure %READC-ERR: atom 45 PHE QD not found in molecular structure %READC-ERR: atom 45 PHE QE not found in molecular structure %READC-ERR: atom 45 PHE QR not found in molecular structure %READC-ERR: atom 46 THR QG2 not found in molecular structure %READC-ERR: atom 46 THR 1HG2 not found in molecular structure %READC-ERR: atom 46 THR 2HG2 not found in molecular structure %READC-ERR: atom 46 THR 3HG2 not found in molecular structure %READC-ERR: atom 47 ALA QB not found in molecular structure %READC-ERR: atom 47 ALA 1HB not found in molecular structure %READC-ERR: atom 47 ALA 2HB not found in molecular structure %READC-ERR: atom 47 ALA 3HB not found in molecular structure %READC-ERR: atom 48 SER 2HB not found in molecular structure %READC-ERR: atom 48 SER 3HB not found in molecular structure %READC-ERR: atom 48 SER QB not found in molecular structure %READC-ERR: atom 49 TRP 2HB not found in molecular structure %READC-ERR: atom 49 TRP 3HB not found in molecular structure %READC-ERR: atom 49 TRP QB not found in molecular structure %READC-ERR: atom 50 CYS 2HB not found in molecular structure %READC-ERR: atom 50 CYS 3HB not found in molecular structure %READC-ERR: atom 50 CYS QB not found in molecular structure %READC-ERR: atom 51 GLY 1HA not found in molecular structure %READC-ERR: atom 51 GLY 2HA not found in molecular structure %READC-ERR: atom 51 GLY QA not found in molecular structure %READC-ERR: atom 52 PRO 2HB not found in molecular structure %READC-ERR: atom 52 PRO 3HB not found in molecular structure %READC-ERR: atom 52 PRO QB not found in molecular structure %READC-ERR: atom 52 PRO 2HG not found in molecular structure %READC-ERR: atom 52 PRO 3HG not found in molecular structure %READC-ERR: atom 52 PRO QG not found in molecular structure %READC-ERR: atom 52 PRO 2HD not found in molecular structure %READC-ERR: atom 52 PRO 3HD not found in molecular structure %READC-ERR: atom 52 PRO QD not found in molecular structure %READC-ERR: atom 53 CYS 2HB not found in molecular structure %READC-ERR: atom 53 CYS 3HB not found in molecular structure %READC-ERR: atom 53 CYS QB not found in molecular structure %READC-ERR: atom 54 ARG 2HB not found in molecular structure %READC-ERR: atom 54 ARG 3HB not found in molecular structure %READC-ERR: atom 54 ARG QB not found in molecular structure %READC-ERR: atom 54 ARG 2HG not found in molecular structure %READC-ERR: atom 54 ARG 3HG not found in molecular structure %READC-ERR: atom 54 ARG QG not found in molecular structure %READC-ERR: atom 54 ARG 2HD not found in molecular structure %READC-ERR: atom 54 ARG 3HD not found in molecular structure %READC-ERR: atom 54 ARG QD not found in molecular structure %READC-ERR: atom 54 ARG 1HH1 not found in molecular structure %READC-ERR: atom 54 ARG 2HH1 not found in molecular structure %READC-ERR: atom 54 ARG QH1 not found in molecular structure %READC-ERR: atom 54 ARG 1HH2 not found in molecular structure %READC-ERR: atom 54 ARG 2HH2 not found in molecular structure %READC-ERR: atom 54 ARG QH2 not found in molecular structure %READC-ERR: atom 55 PHE 2HB not found in molecular structure %READC-ERR: atom 55 PHE 3HB not found in molecular structure %READC-ERR: atom 55 PHE QB not found in molecular structure %READC-ERR: atom 55 PHE QD not found in molecular structure %READC-ERR: atom 55 PHE QE not found in molecular structure %READC-ERR: atom 55 PHE QR not found in molecular structure %READC-ERR: atom 56 ILE QG2 not found in molecular structure %READC-ERR: atom 56 ILE 1HG2 not found in molecular structure %READC-ERR: atom 56 ILE 2HG2 not found in molecular structure %READC-ERR: atom 56 ILE 3HG2 not found in molecular structure %READC-ERR: atom 56 ILE 2HG1 not found in molecular structure %READC-ERR: atom 56 ILE 3HG1 not found in molecular structure %READC-ERR: atom 56 ILE QG1 not found in molecular structure %READC-ERR: atom 56 ILE QD1 not found in molecular structure %READC-ERR: atom 56 ILE 1HD1 not found in molecular structure %READC-ERR: atom 56 ILE 2HD1 not found in molecular structure %READC-ERR: atom 56 ILE 3HD1 not found in molecular structure %READC-ERR: atom 57 ALA QB not found in molecular structure %READC-ERR: atom 57 ALA 1HB not found in molecular structure %READC-ERR: atom 57 ALA 2HB not found in molecular structure %READC-ERR: atom 57 ALA 3HB not found in molecular structure %READC-ERR: atom 58 PRO 2HB not found in molecular structure %READC-ERR: atom 58 PRO 3HB not found in molecular structure %READC-ERR: atom 58 PRO QB not found in molecular structure %READC-ERR: atom 58 PRO 2HG not found in molecular structure %READC-ERR: atom 58 PRO 3HG not found in molecular structure %READC-ERR: atom 58 PRO QG not found in molecular structure %READC-ERR: atom 58 PRO 2HD not found in molecular structure %READC-ERR: atom 58 PRO 3HD not found in molecular structure %READC-ERR: atom 58 PRO QD not found in molecular structure %READC-ERR: atom 59 PHE 2HB not found in molecular structure %READC-ERR: atom 59 PHE 3HB not found in molecular structure %READC-ERR: atom 59 PHE QB not found in molecular structure %READC-ERR: atom 59 PHE QD not found in molecular structure %READC-ERR: atom 59 PHE QE not found in molecular structure %READC-ERR: atom 59 PHE QR not found in molecular structure %READC-ERR: atom 60 PHE 2HB not found in molecular structure %READC-ERR: atom 60 PHE 3HB not found in molecular structure %READC-ERR: atom 60 PHE QB not found in molecular structure %READC-ERR: atom 60 PHE QD not found in molecular structure %READC-ERR: atom 60 PHE QE not found in molecular structure %READC-ERR: atom 60 PHE QR not found in molecular structure %READC-ERR: atom 61 ALA QB not found in molecular structure %READC-ERR: atom 61 ALA 1HB not found in molecular structure %READC-ERR: atom 61 ALA 2HB not found in molecular structure %READC-ERR: atom 61 ALA 3HB not found in molecular structure %READC-ERR: atom 62 ASP 2HB not found in molecular structure %READC-ERR: atom 62 ASP 3HB not found in molecular structure %READC-ERR: atom 62 ASP QB not found in molecular structure %READC-ERR: atom 63 LEU 2HB not found in molecular structure %READC-ERR: atom 63 LEU 3HB not found in molecular structure %READC-ERR: atom 63 LEU QB not found in molecular structure %READC-ERR: atom 63 LEU QD1 not found in molecular structure %READC-ERR: atom 63 LEU QD2 not found in molecular structure %READC-ERR: atom 63 LEU 1HD1 not found in molecular structure %READC-ERR: atom 63 LEU 2HD1 not found in molecular structure %READC-ERR: atom 63 LEU 3HD1 not found in molecular structure %READC-ERR: atom 63 LEU 1HD2 not found in molecular structure %READC-ERR: atom 63 LEU 2HD2 not found in molecular structure %READC-ERR: atom 63 LEU 3HD2 not found in molecular structure %READC-ERR: atom 63 LEU QQD not found in molecular structure %READC-ERR: atom 64 ALA QB not found in molecular structure %READC-ERR: atom 64 ALA 1HB not found in molecular structure %READC-ERR: atom 64 ALA 2HB not found in molecular structure %READC-ERR: atom 64 ALA 3HB not found in molecular structure %READC-ERR: atom 65 LYS 2HB not found in molecular structure %READC-ERR: atom 65 LYS 3HB not found in molecular structure %READC-ERR: atom 65 LYS QB not found in molecular structure %READC-ERR: atom 65 LYS 2HG not found in molecular structure %READC-ERR: atom 65 LYS 3HG not found in molecular structure %READC-ERR: atom 65 LYS QG not found in molecular structure %READC-ERR: atom 65 LYS 2HD not found in molecular structure %READC-ERR: atom 65 LYS 3HD not found in molecular structure %READC-ERR: atom 65 LYS QD not found in molecular structure %READC-ERR: atom 65 LYS 2HE not found in molecular structure %READC-ERR: atom 65 LYS 3HE not found in molecular structure %READC-ERR: atom 65 LYS QE not found in molecular structure %READC-ERR: atom 65 LYS 1HZ not found in molecular structure %READC-ERR: atom 65 LYS 2HZ not found in molecular structure %READC-ERR: atom 65 LYS 3HZ not found in molecular structure %READC-ERR: atom 65 LYS QZ not found in molecular structure %READC-ERR: atom 66 LYS 2HB not found in molecular structure %READC-ERR: atom 66 LYS 3HB not found in molecular structure %READC-ERR: atom 66 LYS QB not found in molecular structure %READC-ERR: atom 66 LYS 2HG not found in molecular structure %READC-ERR: atom 66 LYS 3HG not found in molecular structure %READC-ERR: atom 66 LYS QG not found in molecular structure %READC-ERR: atom 66 LYS 2HD not found in molecular structure %READC-ERR: atom 66 LYS 3HD not found in molecular structure %READC-ERR: atom 66 LYS QD not found in molecular structure %READC-ERR: atom 66 LYS 2HE not found in molecular structure %READC-ERR: atom 66 LYS 3HE not found in molecular structure %READC-ERR: atom 66 LYS QE not found in molecular structure %READC-ERR: atom 66 LYS 1HZ not found in molecular structure %READC-ERR: atom 66 LYS 2HZ not found in molecular structure %READC-ERR: atom 66 LYS 3HZ not found in molecular structure %READC-ERR: atom 66 LYS QZ not found in molecular structure %READC-ERR: atom 67 LEU 2HB not found in molecular structure %READC-ERR: atom 67 LEU 3HB not found in molecular structure %READC-ERR: atom 67 LEU QB not found in molecular structure %READC-ERR: atom 67 LEU QD1 not found in molecular structure %READC-ERR: atom 67 LEU QD2 not found in molecular structure %READC-ERR: atom 67 LEU 1HD1 not found in molecular structure %READC-ERR: atom 67 LEU 2HD1 not found in molecular structure %READC-ERR: atom 67 LEU 3HD1 not found in molecular structure %READC-ERR: atom 67 LEU 1HD2 not found in molecular structure %READC-ERR: atom 67 LEU 2HD2 not found in molecular structure %READC-ERR: atom 67 LEU 3HD2 not found in molecular structure %READC-ERR: atom 67 LEU QQD not found in molecular structure %READC-ERR: atom 68 PRO 2HB not found in molecular structure %READC-ERR: atom 68 PRO 3HB not found in molecular structure %READC-ERR: atom 68 PRO QB not found in molecular structure %READC-ERR: atom 68 PRO 2HG not found in molecular structure %READC-ERR: atom 68 PRO 3HG not found in molecular structure %READC-ERR: atom 68 PRO QG not found in molecular structure %READC-ERR: atom 68 PRO 2HD not found in molecular structure %READC-ERR: atom 68 PRO 3HD not found in molecular structure %READC-ERR: atom 68 PRO QD not found in molecular structure %READC-ERR: atom 69 ASN 2HB not found in molecular structure %READC-ERR: atom 69 ASN 3HB not found in molecular structure %READC-ERR: atom 69 ASN QB not found in molecular structure %READC-ERR: atom 69 ASN 1HD2 not found in molecular structure %READC-ERR: atom 69 ASN 2HD2 not found in molecular structure %READC-ERR: atom 69 ASN QD2 not found in molecular structure %READC-ERR: atom 70 VAL QG1 not found in molecular structure %READC-ERR: atom 70 VAL QG2 not found in molecular structure %READC-ERR: atom 70 VAL 1HG1 not found in molecular structure %READC-ERR: atom 70 VAL 2HG1 not found in molecular structure %READC-ERR: atom 70 VAL 3HG1 not found in molecular structure %READC-ERR: atom 70 VAL 1HG2 not found in molecular structure %READC-ERR: atom 70 VAL 2HG2 not found in molecular structure %READC-ERR: atom 70 VAL 3HG2 not found in molecular structure %READC-ERR: atom 70 VAL QQG not found in molecular structure %READC-ERR: atom 71 LEU 2HB not found in molecular structure %READC-ERR: atom 71 LEU 3HB not found in molecular structure %READC-ERR: atom 71 LEU QB not found in molecular structure %READC-ERR: atom 71 LEU QD1 not found in molecular structure %READC-ERR: atom 71 LEU QD2 not found in molecular structure %READC-ERR: atom 71 LEU 1HD1 not found in molecular structure %READC-ERR: atom 71 LEU 2HD1 not found in molecular structure %READC-ERR: atom 71 LEU 3HD1 not found in molecular structure %READC-ERR: atom 71 LEU 1HD2 not found in molecular structure %READC-ERR: atom 71 LEU 2HD2 not found in molecular structure %READC-ERR: atom 71 LEU 3HD2 not found in molecular structure %READC-ERR: atom 71 LEU QQD not found in molecular structure %READC-ERR: atom 72 PHE 2HB not found in molecular structure %READC-ERR: atom 72 PHE 3HB not found in molecular structure %READC-ERR: atom 72 PHE QB not found in molecular structure %READC-ERR: atom 72 PHE QD not found in molecular structure %READC-ERR: atom 72 PHE QE not found in molecular structure %READC-ERR: atom 72 PHE QR not found in molecular structure %READC-ERR: atom 73 LEU 2HB not found in molecular structure %READC-ERR: atom 73 LEU 3HB not found in molecular structure %READC-ERR: atom 73 LEU QB not found in molecular structure %READC-ERR: atom 73 LEU QD1 not found in molecular structure %READC-ERR: atom 73 LEU QD2 not found in molecular structure %READC-ERR: atom 73 LEU 1HD1 not found in molecular structure %READC-ERR: atom 73 LEU 2HD1 not found in molecular structure %READC-ERR: atom 73 LEU 3HD1 not found in molecular structure %READC-ERR: atom 73 LEU 1HD2 not found in molecular structure %READC-ERR: atom 73 LEU 2HD2 not found in molecular structure %READC-ERR: atom 73 LEU 3HD2 not found in molecular structure %READC-ERR: atom 73 LEU QQD not found in molecular structure %READC-ERR: atom 74 LYS 2HB not found in molecular structure %READC-ERR: atom 74 LYS 3HB not found in molecular structure %READC-ERR: atom 74 LYS QB not found in molecular structure %READC-ERR: atom 74 LYS 2HG not found in molecular structure %READC-ERR: atom 74 LYS 3HG not found in molecular structure %READC-ERR: atom 74 LYS QG not found in molecular structure %READC-ERR: atom 74 LYS 2HD not found in molecular structure %READC-ERR: atom 74 LYS 3HD not found in molecular structure %READC-ERR: atom 74 LYS QD not found in molecular structure %READC-ERR: atom 74 LYS 2HE not found in molecular structure %READC-ERR: atom 74 LYS 3HE not found in molecular structure %READC-ERR: atom 74 LYS QE not found in molecular structure %READC-ERR: atom 74 LYS 1HZ not found in molecular structure %READC-ERR: atom 74 LYS 2HZ not found in molecular structure %READC-ERR: atom 74 LYS 3HZ not found in molecular structure %READC-ERR: atom 74 LYS QZ not found in molecular structure %READC-ERR: atom 75 VAL QG1 not found in molecular structure %READC-ERR: atom 75 VAL QG2 not found in molecular structure %READC-ERR: atom 75 VAL 1HG1 not found in molecular structure %READC-ERR: atom 75 VAL 2HG1 not found in molecular structure %READC-ERR: atom 75 VAL 3HG1 not found in molecular structure %READC-ERR: atom 75 VAL 1HG2 not found in molecular structure %READC-ERR: atom 75 VAL 2HG2 not found in molecular structure %READC-ERR: atom 75 VAL 3HG2 not found in molecular structure %READC-ERR: atom 75 VAL QQG not found in molecular structure %READC-ERR: atom 76 ASP 2HB not found in molecular structure %READC-ERR: atom 76 ASP 3HB not found in molecular structure %READC-ERR: atom 76 ASP QB not found in molecular structure %READC-ERR: atom 77 THR QG2 not found in molecular structure %READC-ERR: atom 77 THR 1HG2 not found in molecular structure %READC-ERR: atom 77 THR 2HG2 not found in molecular structure %READC-ERR: atom 77 THR 3HG2 not found in molecular structure %READC-ERR: atom 78 ASP 2HB not found in molecular structure %READC-ERR: atom 78 ASP 3HB not found in molecular structure %READC-ERR: atom 78 ASP QB not found in molecular structure %READC-ERR: atom 79 GLU 2HB not found in molecular structure %READC-ERR: atom 79 GLU 3HB not found in molecular structure %READC-ERR: atom 79 GLU QB not found in molecular structure %READC-ERR: atom 79 GLU 2HG not found in molecular structure %READC-ERR: atom 79 GLU 3HG not found in molecular structure %READC-ERR: atom 79 GLU QG not found in molecular structure %READC-ERR: atom 80 LEU 2HB not found in molecular structure %READC-ERR: atom 80 LEU 3HB not found in molecular structure %READC-ERR: atom 80 LEU QB not found in molecular structure %READC-ERR: atom 80 LEU QD1 not found in molecular structure %READC-ERR: atom 80 LEU QD2 not found in molecular structure %READC-ERR: atom 80 LEU 1HD1 not found in molecular structure %READC-ERR: atom 80 LEU 2HD1 not found in molecular structure %READC-ERR: atom 80 LEU 3HD1 not found in molecular structure %READC-ERR: atom 80 LEU 1HD2 not found in molecular structure %READC-ERR: atom 80 LEU 2HD2 not found in molecular structure %READC-ERR: atom 80 LEU 3HD2 not found in molecular structure %READC-ERR: atom 80 LEU QQD not found in molecular structure %READC-ERR: atom 81 LYS 2HB not found in molecular structure %READC-ERR: atom 81 LYS 3HB not found in molecular structure %READC-ERR: atom 81 LYS QB not found in molecular structure %READC-ERR: atom 81 LYS 2HG not found in molecular structure %READC-ERR: atom 81 LYS 3HG not found in molecular structure %READC-ERR: atom 81 LYS QG not found in molecular structure %READC-ERR: atom 81 LYS 2HD not found in molecular structure %READC-ERR: atom 81 LYS 3HD not found in molecular structure %READC-ERR: atom 81 LYS QD not found in molecular structure %READC-ERR: atom 81 LYS 2HE not found in molecular structure %READC-ERR: atom 81 LYS 3HE not found in molecular structure %READC-ERR: atom 81 LYS QE not found in molecular structure %READC-ERR: atom 81 LYS 1HZ not found in molecular structure %READC-ERR: atom 81 LYS 2HZ not found in molecular structure %READC-ERR: atom 81 LYS 3HZ not found in molecular structure %READC-ERR: atom 81 LYS QZ not found in molecular structure %READC-ERR: atom 82 SER 2HB not found in molecular structure %READC-ERR: atom 82 SER 3HB not found in molecular structure %READC-ERR: atom 82 SER QB not found in molecular structure %READC-ERR: atom 83 VAL QG1 not found in molecular structure %READC-ERR: atom 83 VAL QG2 not found in molecular structure %READC-ERR: atom 83 VAL 1HG1 not found in molecular structure %READC-ERR: atom 83 VAL 2HG1 not found in molecular structure %READC-ERR: atom 83 VAL 3HG1 not found in molecular structure %READC-ERR: atom 83 VAL 1HG2 not found in molecular structure %READC-ERR: atom 83 VAL 2HG2 not found in molecular structure %READC-ERR: atom 83 VAL 3HG2 not found in molecular structure %READC-ERR: atom 83 VAL QQG not found in molecular structure %READC-ERR: atom 84 ALA QB not found in molecular structure %READC-ERR: atom 84 ALA 1HB not found in molecular structure %READC-ERR: atom 84 ALA 2HB not found in molecular structure %READC-ERR: atom 84 ALA 3HB not found in molecular structure %READC-ERR: atom 85 SER 2HB not found in molecular structure %READC-ERR: atom 85 SER 3HB not found in molecular structure %READC-ERR: atom 85 SER QB not found in molecular structure %READC-ERR: atom 86 ASP 2HB not found in molecular structure %READC-ERR: atom 86 ASP 3HB not found in molecular structure %READC-ERR: atom 86 ASP QB not found in molecular structure %READC-ERR: atom 87 TRP 2HB not found in molecular structure %READC-ERR: atom 87 TRP 3HB not found in molecular structure %READC-ERR: atom 87 TRP QB not found in molecular structure %READC-ERR: atom 88 ALA QB not found in molecular structure %READC-ERR: atom 88 ALA 1HB not found in molecular structure %READC-ERR: atom 88 ALA 2HB not found in molecular structure %READC-ERR: atom 88 ALA 3HB not found in molecular structure %READC-ERR: atom 89 ILE QG2 not found in molecular structure %READC-ERR: atom 89 ILE 1HG2 not found in molecular structure %READC-ERR: atom 89 ILE 2HG2 not found in molecular structure %READC-ERR: atom 89 ILE 3HG2 not found in molecular structure %READC-ERR: atom 89 ILE 2HG1 not found in molecular structure %READC-ERR: atom 89 ILE 3HG1 not found in molecular structure %READC-ERR: atom 89 ILE QG1 not found in molecular structure %READC-ERR: atom 89 ILE QD1 not found in molecular structure %READC-ERR: atom 89 ILE 1HD1 not found in molecular structure %READC-ERR: atom 89 ILE 2HD1 not found in molecular structure %READC-ERR: atom 89 ILE 3HD1 not found in molecular structure %READC-ERR: atom 90 GLN 2HB not found in molecular structure %READC-ERR: atom 90 GLN 3HB not found in molecular structure %READC-ERR: atom 90 GLN QB not found in molecular structure %READC-ERR: atom 90 GLN 2HG not found in molecular structure %READC-ERR: atom 90 GLN 3HG not found in molecular structure %READC-ERR: atom 90 GLN QG not found in molecular structure %READC-ERR: atom 90 GLN 1HE2 not found in molecular structure %READC-ERR: atom 90 GLN 2HE2 not found in molecular structure %READC-ERR: atom 90 GLN QE2 not found in molecular structure %READC-ERR: atom 91 ALA QB not found in molecular structure %READC-ERR: atom 91 ALA 1HB not found in molecular structure %READC-ERR: atom 91 ALA 2HB not found in molecular structure %READC-ERR: atom 91 ALA 3HB not found in molecular structure %READC-ERR: atom 92 MET 2HB not found in molecular structure %READC-ERR: atom 92 MET 3HB not found in molecular structure %READC-ERR: atom 92 MET QB not found in molecular structure %READC-ERR: atom 92 MET 2HG not found in molecular structure %READC-ERR: atom 92 MET 3HG not found in molecular structure %READC-ERR: atom 92 MET QG not found in molecular structure %READC-ERR: atom 92 MET QE not found in molecular structure %READC-ERR: atom 92 MET 1HE not found in molecular structure %READC-ERR: atom 92 MET 2HE not found in molecular structure %READC-ERR: atom 92 MET 3HE not found in molecular structure %READC-ERR: atom 93 PRO 2HB not found in molecular structure %READC-ERR: atom 93 PRO 3HB not found in molecular structure %READC-ERR: atom 93 PRO QB not found in molecular structure %READC-ERR: atom 93 PRO 2HG not found in molecular structure %READC-ERR: atom 93 PRO 3HG not found in molecular structure %READC-ERR: atom 93 PRO QG not found in molecular structure %READC-ERR: atom 93 PRO 2HD not found in molecular structure %READC-ERR: atom 93 PRO 3HD not found in molecular structure %READC-ERR: atom 93 PRO QD not found in molecular structure %READC-ERR: atom 94 THR QG2 not found in molecular structure %READC-ERR: atom 94 THR 1HG2 not found in molecular structure %READC-ERR: atom 94 THR 2HG2 not found in molecular structure %READC-ERR: atom 94 THR 3HG2 not found in molecular structure %READC-ERR: atom 95 PHE 2HB not found in molecular structure %READC-ERR: atom 95 PHE 3HB not found in molecular structure %READC-ERR: atom 95 PHE QB not found in molecular structure %READC-ERR: atom 95 PHE QD not found in molecular structure %READC-ERR: atom 95 PHE QE not found in molecular structure %READC-ERR: atom 95 PHE QR not found in molecular structure %READC-ERR: atom 96 MET 2HB not found in molecular structure %READC-ERR: atom 96 MET 3HB not found in molecular structure %READC-ERR: atom 96 MET QB not found in molecular structure %READC-ERR: atom 96 MET 2HG not found in molecular structure %READC-ERR: atom 96 MET 3HG not found in molecular structure %READC-ERR: atom 96 MET QG not found in molecular structure %READC-ERR: atom 96 MET QE not found in molecular structure %READC-ERR: atom 96 MET 1HE not found in molecular structure %READC-ERR: atom 96 MET 2HE not found in molecular structure %READC-ERR: atom 96 MET 3HE not found in molecular structure %READC-ERR: atom 97 PHE 2HB not found in molecular structure %READC-ERR: atom 97 PHE 3HB not found in molecular structure %READC-ERR: atom 97 PHE QB not found in molecular structure %READC-ERR: atom 97 PHE QD not found in molecular structure %READC-ERR: atom 97 PHE QE not found in molecular structure %READC-ERR: atom 97 PHE QR not found in molecular structure %READC-ERR: atom 98 LEU 2HB not found in molecular structure %READC-ERR: atom 98 LEU 3HB not found in molecular structure %READC-ERR: atom 98 LEU QB not found in molecular structure %READC-ERR: atom 98 LEU QD1 not found in molecular structure %READC-ERR: atom 98 LEU QD2 not found in molecular structure %READC-ERR: atom 98 LEU 1HD1 not found in molecular structure %READC-ERR: atom 98 LEU 2HD1 not found in molecular structure %READC-ERR: atom 98 LEU 3HD1 not found in molecular structure %READC-ERR: atom 98 LEU 1HD2 not found in molecular structure %READC-ERR: atom 98 LEU 2HD2 not found in molecular structure %READC-ERR: atom 98 LEU 3HD2 not found in molecular structure %READC-ERR: atom 98 LEU QQD not found in molecular structure %READC-ERR: atom 99 LYS 2HB not found in molecular structure %READC-ERR: atom 99 LYS 3HB not found in molecular structure %READC-ERR: atom 99 LYS QB not found in molecular structure %READC-ERR: atom 99 LYS 2HG not found in molecular structure %READC-ERR: atom 99 LYS 3HG not found in molecular structure %READC-ERR: atom 99 LYS QG not found in molecular structure %READC-ERR: atom 99 LYS 2HD not found in molecular structure %READC-ERR: atom 99 LYS 3HD not found in molecular structure %READC-ERR: atom 99 LYS QD not found in molecular structure %READC-ERR: atom 99 LYS 2HE not found in molecular structure %READC-ERR: atom 99 LYS 3HE not found in molecular structure %READC-ERR: atom 99 LYS QE not found in molecular structure %READC-ERR: atom 99 LYS 1HZ not found in molecular structure %READC-ERR: atom 99 LYS 2HZ not found in molecular structure %READC-ERR: atom 99 LYS 3HZ not found in molecular structure %READC-ERR: atom 99 LYS QZ not found in molecular structure %READC-ERR: atom 100 GLU 2HB not found in molecular structure %READC-ERR: atom 100 GLU 3HB not found in molecular structure %READC-ERR: atom 100 GLU QB not found in molecular structure %READC-ERR: atom 100 GLU 2HG not found in molecular structure %READC-ERR: atom 100 GLU 3HG not found in molecular structure %READC-ERR: atom 100 GLU QG not found in molecular structure %READC-ERR: atom 101 GLY 1HA not found in molecular structure %READC-ERR: atom 101 GLY 2HA not found in molecular structure %READC-ERR: atom 101 GLY QA not found in molecular structure %READC-ERR: atom 102 LYS 2HB not found in molecular structure %READC-ERR: atom 102 LYS 3HB not found in molecular structure %READC-ERR: atom 102 LYS QB not found in molecular structure %READC-ERR: atom 102 LYS 2HG not found in molecular structure %READC-ERR: atom 102 LYS 3HG not found in molecular structure %READC-ERR: atom 102 LYS QG not found in molecular structure %READC-ERR: atom 102 LYS 2HD not found in molecular structure %READC-ERR: atom 102 LYS 3HD not found in molecular structure %READC-ERR: atom 102 LYS QD not found in molecular structure %READC-ERR: atom 102 LYS 2HE not found in molecular structure %READC-ERR: atom 102 LYS 3HE not found in molecular structure %READC-ERR: atom 102 LYS QE not found in molecular structure %READC-ERR: atom 102 LYS 1HZ not found in molecular structure %READC-ERR: atom 102 LYS 2HZ not found in molecular structure %READC-ERR: atom 102 LYS 3HZ not found in molecular structure %READC-ERR: atom 102 LYS QZ not found in molecular structure %READC-ERR: atom 103 ILE QG2 not found in molecular structure %READC-ERR: atom 103 ILE 1HG2 not found in molecular structure %READC-ERR: atom 103 ILE 2HG2 not found in molecular structure %READC-ERR: atom 103 ILE 3HG2 not found in molecular structure %READC-ERR: atom 103 ILE 2HG1 not found in molecular structure %READC-ERR: atom 103 ILE 3HG1 not found in molecular structure %READC-ERR: atom 103 ILE QG1 not found in molecular structure %READC-ERR: atom 103 ILE QD1 not found in molecular structure %READC-ERR: atom 103 ILE 1HD1 not found in molecular structure %READC-ERR: atom 103 ILE 2HD1 not found in molecular structure %READC-ERR: atom 103 ILE 3HD1 not found in molecular structure %READC-ERR: atom 104 LEU 2HB not found in molecular structure %READC-ERR: atom 104 LEU 3HB not found in molecular structure %READC-ERR: atom 104 LEU QB not found in molecular structure %READC-ERR: atom 104 LEU QD1 not found in molecular structure %READC-ERR: atom 104 LEU QD2 not found in molecular structure %READC-ERR: atom 104 LEU 1HD1 not found in molecular structure %READC-ERR: atom 104 LEU 2HD1 not found in molecular structure %READC-ERR: atom 104 LEU 3HD1 not found in molecular structure %READC-ERR: atom 104 LEU 1HD2 not found in molecular structure %READC-ERR: atom 104 LEU 2HD2 not found in molecular structure %READC-ERR: atom 104 LEU 3HD2 not found in molecular structure %READC-ERR: atom 104 LEU QQD not found in molecular structure %READC-ERR: atom 105 ASP 2HB not found in molecular structure %READC-ERR: atom 105 ASP 3HB not found in molecular structure %READC-ERR: atom 105 ASP QB not found in molecular structure %READC-ERR: atom 106 LYS 2HB not found in molecular structure %READC-ERR: atom 106 LYS 3HB not found in molecular structure %READC-ERR: atom 106 LYS QB not found in molecular structure %READC-ERR: atom 106 LYS 2HG not found in molecular structure %READC-ERR: atom 106 LYS 3HG not found in molecular structure %READC-ERR: atom 106 LYS QG not found in molecular structure %READC-ERR: atom 106 LYS 2HD not found in molecular structure %READC-ERR: atom 106 LYS 3HD not found in molecular structure %READC-ERR: atom 106 LYS QD not found in molecular structure %READC-ERR: atom 106 LYS 2HE not found in molecular structure %READC-ERR: atom 106 LYS 3HE not found in molecular structure %READC-ERR: atom 106 LYS QE not found in molecular structure %READC-ERR: atom 106 LYS 1HZ not found in molecular structure %READC-ERR: atom 106 LYS 2HZ not found in molecular structure %READC-ERR: atom 106 LYS 3HZ not found in molecular structure %READC-ERR: atom 106 LYS QZ not found in molecular structure %READC-ERR: atom 107 VAL QG1 not found in molecular structure %READC-ERR: atom 107 VAL QG2 not found in molecular structure %READC-ERR: atom 107 VAL 1HG1 not found in molecular structure %READC-ERR: atom 107 VAL 2HG1 not found in molecular structure %READC-ERR: atom 107 VAL 3HG1 not found in molecular structure %READC-ERR: atom 107 VAL 1HG2 not found in molecular structure %READC-ERR: atom 107 VAL 2HG2 not found in molecular structure %READC-ERR: atom 107 VAL 3HG2 not found in molecular structure %READC-ERR: atom 107 VAL QQG not found in molecular structure %READC-ERR: atom 108 VAL QG1 not found in molecular structure %READC-ERR: atom 108 VAL QG2 not found in molecular structure %READC-ERR: atom 108 VAL 1HG1 not found in molecular structure %READC-ERR: atom 108 VAL 2HG1 not found in molecular structure %READC-ERR: atom 108 VAL 3HG1 not found in molecular structure %READC-ERR: atom 108 VAL 1HG2 not found in molecular structure %READC-ERR: atom 108 VAL 2HG2 not found in molecular structure %READC-ERR: atom 108 VAL 3HG2 not found in molecular structure %READC-ERR: atom 108 VAL QQG not found in molecular structure %READC-ERR: atom 109 GLY 1HA not found in molecular structure %READC-ERR: atom 109 GLY 2HA not found in molecular structure %READC-ERR: atom 109 GLY QA not found in molecular structure %READC-ERR: atom 110 ALA QB not found in molecular structure %READC-ERR: atom 110 ALA 1HB not found in molecular structure %READC-ERR: atom 110 ALA 2HB not found in molecular structure %READC-ERR: atom 110 ALA 3HB not found in molecular structure %READC-ERR: atom 111 LYS 2HB not found in molecular structure %READC-ERR: atom 111 LYS 3HB not found in molecular structure %READC-ERR: atom 111 LYS QB not found in molecular structure %READC-ERR: atom 111 LYS 2HG not found in molecular structure %READC-ERR: atom 111 LYS 3HG not found in molecular structure %READC-ERR: atom 111 LYS QG not found in molecular structure %READC-ERR: atom 111 LYS 2HD not found in molecular structure %READC-ERR: atom 111 LYS 3HD not found in molecular structure %READC-ERR: atom 111 LYS QD not found in molecular structure %READC-ERR: atom 111 LYS 2HE not found in molecular structure %READC-ERR: atom 111 LYS 3HE not found in molecular structure %READC-ERR: atom 111 LYS QE not found in molecular structure %READC-ERR: atom 111 LYS 1HZ not found in molecular structure %READC-ERR: atom 111 LYS 2HZ not found in molecular structure %READC-ERR: atom 111 LYS 3HZ not found in molecular structure %READC-ERR: atom 111 LYS QZ not found in molecular structure %READC-ERR: atom 112 LYS 2HB not found in molecular structure %READC-ERR: atom 112 LYS 3HB not found in molecular structure %READC-ERR: atom 112 LYS QB not found in molecular structure %READC-ERR: atom 112 LYS 2HG not found in molecular structure %READC-ERR: atom 112 LYS 3HG not found in molecular structure %READC-ERR: atom 112 LYS QG not found in molecular structure %READC-ERR: atom 112 LYS 2HD not found in molecular structure %READC-ERR: atom 112 LYS 3HD not found in molecular structure %READC-ERR: atom 112 LYS QD not found in molecular structure %READC-ERR: atom 112 LYS 2HE not found in molecular structure %READC-ERR: atom 112 LYS 3HE not found in molecular structure %READC-ERR: atom 112 LYS QE not found in molecular structure %READC-ERR: atom 112 LYS 1HZ not found in molecular structure %READC-ERR: atom 112 LYS 2HZ not found in molecular structure %READC-ERR: atom 112 LYS 3HZ not found in molecular structure %READC-ERR: atom 112 LYS QZ not found in molecular structure %READC-ERR: atom 113 ASP 2HB not found in molecular structure %READC-ERR: atom 113 ASP 3HB not found in molecular structure %READC-ERR: atom 113 ASP QB not found in molecular structure %READC-ERR: atom 114 GLU 2HB not found in molecular structure %READC-ERR: atom 114 GLU 3HB not found in molecular structure %READC-ERR: atom 114 GLU QB not found in molecular structure %READC-ERR: atom 114 GLU 2HG not found in molecular structure %READC-ERR: atom 114 GLU 3HG not found in molecular structure %READC-ERR: atom 114 GLU QG not found in molecular structure %READC-ERR: atom 115 LEU 2HB not found in molecular structure %READC-ERR: atom 115 LEU 3HB not found in molecular structure %READC-ERR: atom 115 LEU QB not found in molecular structure %READC-ERR: atom 115 LEU QD1 not found in molecular structure %READC-ERR: atom 115 LEU QD2 not found in molecular structure %READC-ERR: atom 115 LEU 1HD1 not found in molecular structure %READC-ERR: atom 115 LEU 2HD1 not found in molecular structure %READC-ERR: atom 115 LEU 3HD1 not found in molecular structure %READC-ERR: atom 115 LEU 1HD2 not found in molecular structure %READC-ERR: atom 115 LEU 2HD2 not found in molecular structure %READC-ERR: atom 115 LEU 3HD2 not found in molecular structure %READC-ERR: atom 115 LEU QQD not found in molecular structure %READC-ERR: atom 116 GLN 2HB not found in molecular structure %READC-ERR: atom 116 GLN 3HB not found in molecular structure %READC-ERR: atom 116 GLN QB not found in molecular structure %READC-ERR: atom 116 GLN 2HG not found in molecular structure %READC-ERR: atom 116 GLN 3HG not found in molecular structure %READC-ERR: atom 116 GLN QG not found in molecular structure %READC-ERR: atom 116 GLN 1HE2 not found in molecular structure %READC-ERR: atom 116 GLN 2HE2 not found in molecular structure %READC-ERR: atom 116 GLN QE2 not found in molecular structure %READC-ERR: atom 117 SER 2HB not found in molecular structure %READC-ERR: atom 117 SER 3HB not found in molecular structure %READC-ERR: atom 117 SER QB not found in molecular structure %READC-ERR: atom 118 THR QG2 not found in molecular structure %READC-ERR: atom 118 THR 1HG2 not found in molecular structure %READC-ERR: atom 118 THR 2HG2 not found in molecular structure %READC-ERR: atom 118 THR 3HG2 not found in molecular structure %READC-ERR: atom 119 ILE QG2 not found in molecular structure %READC-ERR: atom 119 ILE 1HG2 not found in molecular structure %READC-ERR: atom 119 ILE 2HG2 not found in molecular structure %READC-ERR: atom 119 ILE 3HG2 not found in molecular structure %READC-ERR: atom 119 ILE 2HG1 not found in molecular structure %READC-ERR: atom 119 ILE 3HG1 not found in molecular structure %READC-ERR: atom 119 ILE QG1 not found in molecular structure %READC-ERR: atom 119 ILE QD1 not found in molecular structure %READC-ERR: atom 119 ILE 1HD1 not found in molecular structure %READC-ERR: atom 119 ILE 2HD1 not found in molecular structure %READC-ERR: atom 119 ILE 3HD1 not found in molecular structure %READC-ERR: atom 120 ALA QB not found in molecular structure %READC-ERR: atom 120 ALA 1HB not found in molecular structure %READC-ERR: atom 120 ALA 2HB not found in molecular structure %READC-ERR: atom 120 ALA 3HB not found in molecular structure %READC-ERR: atom 121 LYS 2HB not found in molecular structure %READC-ERR: atom 121 LYS 3HB not found in molecular structure %READC-ERR: atom 121 LYS QB not found in molecular structure %READC-ERR: atom 121 LYS 2HG not found in molecular structure %READC-ERR: atom 121 LYS 3HG not found in molecular structure %READC-ERR: atom 121 LYS QG not found in molecular structure %READC-ERR: atom 121 LYS 2HD not found in molecular structure %READC-ERR: atom 121 LYS 3HD not found in molecular structure %READC-ERR: atom 121 LYS QD not found in molecular structure %READC-ERR: atom 121 LYS 2HE not found in molecular structure %READC-ERR: atom 121 LYS 3HE not found in molecular structure %READC-ERR: atom 121 LYS QE not found in molecular structure %READC-ERR: atom 121 LYS 1HZ not found in molecular structure %READC-ERR: atom 121 LYS 2HZ not found in molecular structure %READC-ERR: atom 121 LYS 3HZ not found in molecular structure %READC-ERR: atom 121 LYS QZ not found in molecular structure %READC-ERR: atom 122 HIS 2HB not found in molecular structure %READC-ERR: atom 122 HIS 3HB not found in molecular structure %READC-ERR: atom 122 HIS QB not found in molecular structure %READC-ERR: atom 123 LEU 2HB not found in molecular structure %READC-ERR: atom 123 LEU 3HB not found in molecular structure %READC-ERR: atom 123 LEU QB not found in molecular structure %READC-ERR: atom 123 LEU QD1 not found in molecular structure %READC-ERR: atom 123 LEU QD2 not found in molecular structure %READC-ERR: atom 123 LEU 1HD1 not found in molecular structure %READC-ERR: atom 123 LEU 2HD1 not found in molecular structure %READC-ERR: atom 123 LEU 3HD1 not found in molecular structure %READC-ERR: atom 123 LEU 1HD2 not found in molecular structure %READC-ERR: atom 123 LEU 2HD2 not found in molecular structure %READC-ERR: atom 123 LEU 3HD2 not found in molecular structure %READC-ERR: atom 123 LEU QQD not found in molecular structure %READC-ERR: atom 124 ALA QB not found in molecular structure %READC-ERR: atom 124 ALA 1HB not found in molecular structure %READC-ERR: atom 124 ALA 2HB not found in molecular structure %READC-ERR: atom 124 ALA 3HB not found in molecular structure %READC-ERR: atom 124 ALA O not found in molecular structure COOR>END CNSsolve>parameter @TOPPAR:parallhdg5.3.pro end PARRDR>! JFD adds FES complex parameters from Milo Westler's calculations PARRDR>! and standard topology. PARRDR> PARRDR>remark file protein-allhdg-ucl.param version UCL date 07-JUL-01 PARRDR>remark for file protein-allhdg-ucl.top version UCL date 14-MAR-00 PARRDR>remark for file protein-allhdg-dih-ucl.top version UCL date 07-JUL-01 PARRDR>remark Geometric energy function parameters for distance geometry and PARRDR>remark simulated annealing. PARRDR>remark Original author: Michael Nilges, EMBL Heidelberg PARRDR>remark Modifications: Mark A. Williams, UCL London PARRDR> PARRDR>set echo off message off end SHOW: sum over selected elements = 2.000000 CNSsolve> CNSsolve> if ( $log_level = verbose ) then CNSsolve> set message=normal echo=on end CNSsolve> else CNSsolve> set message=off echo=off end CNSsolve> end if CNSsolve> CNSsolve> CNSsolve> identity (store1) (none) SELRPN: 0 atoms have been selected out of 1960 CNSsolve> CNSsolve> identity (store1) (&atom_build) SELRPN: 619 atoms have been selected out of 1960 CNSsolve> identity (store1) (store1 or hydrogen) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> show sum(1) (store1) SELRPN: 983 atoms have been selected out of 1960 SHOW: sum over selected elements = 983.000000 CNSsolve> evaluate ($tobuild=$result) EVALUATE: symbol $TOBUILD set to 983.000 (real) CNSsolve> CNSsolve> !evaluate ($tobuild=0) CNSsolve> CNSsolve> if ( $tobuild > 0 ) then NEXTCD: condition evaluated as true CNSsolve> CNSsolve> fix selection=(not(store1)) end SELRPN: 977 atoms have been selected out of 1960 CNSsolve> CNSsolve> show sum(1) (store1) SELRPN: 983 atoms have been selected out of 1960 SHOW: sum over selected elements = 983.000000 CNSsolve> evaluate ($moving=$result) EVALUATE: symbol $MOVING set to 983.000 (real) CNSsolve> CNSsolve> if ( $moving > 0 ) then NEXTCD: condition evaluated as true CNSsolve> for $id in id (tag and byres(store1)) loop avco SELRPN: 124 atoms have been selected out of 1960 FOR ID LOOP: symbol ID set to 1.00000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 1.369667 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 1.36967 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 0.855222 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 0.855222 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -1.837556 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -1.83756 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 20.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 4.975600 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 4.97560 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 1.346800 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 1.34680 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = -2.886600 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -2.88660 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 27.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 6.840200 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 6.84020 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 2.812000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 2.81200 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -6.806067 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -6.80607 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 45.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 9.599333 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 9.59933 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 6.111867 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 6.11187 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -5.137000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -5.13700 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 63.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 14.015400 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 14.0154 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 6.820800 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 6.82080 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -9.213600 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -9.21360 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 81.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 16.969267 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 16.9693 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 3.678400 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 3.67840 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -7.607200 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -7.60720 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 99.0000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 20.918800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 20.9188 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 4.991667 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 4.99167 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -8.600333 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -8.60033 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 117.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 20.767267 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 20.7673 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 10.212467 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 10.2125 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -10.674333 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -10.6743 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 135.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 23.580727 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 23.5807 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 9.931091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 9.93109 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -14.835273 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -14.8353 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 154.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 22.448636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 22.4486 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 13.650818 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 13.6508 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -16.591727 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -16.5917 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 169.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 25.544000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 25.5440 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 14.596500 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 14.5965 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -20.066800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -20.0668 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 186.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 26.704000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.7040 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 18.439429 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 18.4394 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -21.059429 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -21.0594 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 196.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 28.706556 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 28.7066 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 19.204222 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 19.2042 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -24.280111 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -24.2801 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 207.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 30.100636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.1006 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 23.180182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.1802 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -25.022000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -25.0220 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 222.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 27.405545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.4055 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 21.082182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 21.0822 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -28.544818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -28.5448 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 237.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 25.508800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 25.5088 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 24.473000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 24.4730 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = -31.013800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -31.0138 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 244.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 27.111182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.1112 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 26.558091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.5581 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -29.817182 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -29.8172 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 261.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 30.505500 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.5055 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 28.680800 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 28.6808 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -32.849700 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.8497 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 277.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 34.120545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.1205 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 28.096818 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 28.0968 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -30.472182 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -30.4722 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 296.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 35.285429 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 35.2854 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 32.219000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.2190 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -31.055571 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -31.0556 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 306.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 38.893111 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 38.8931 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 32.250444 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.2504 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -30.277444 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -30.2774 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 317.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 38.909267 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 38.9093 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 36.518733 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 36.5187 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -29.621733 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -29.6217 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 335.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.865364 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.8654 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 34.316727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 34.3167 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -28.838545 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -28.8385 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 349.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 47.098100 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 47.0981 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 32.497200 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.4972 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -31.299000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -31.2990 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 365.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 48.474182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 48.4742 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 31.231273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.2313 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -27.396909 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -27.3969 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 380.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.683818 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.6838 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 30.195364 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 30.1954 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -27.087818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -27.0878 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 394.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 43.375636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.3756 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 27.940182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 27.9402 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = -33.603045 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -33.6030 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 418.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 47.115900 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 47.1159 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 26.126800 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.1268 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -30.779400 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -30.7794 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 432.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 44.992091 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 44.9921 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 25.931455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 25.9315 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -25.913364 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -25.9134 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 447.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 40.781364 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.7814 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 24.388727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 24.3887 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -28.569455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -28.5695 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 464.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.809545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.8095 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 22.943818 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 22.9438 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -32.278455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.2785 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 483.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 46.745818 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 46.7458 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 20.276909 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 20.2769 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -28.573273 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -28.5733 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 500.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 41.453636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 41.4536 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 19.816455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 19.8165 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -26.573273 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -26.5733 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 522.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 41.111000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 41.1110 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 18.627286 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 18.6273 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -30.910143 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -30.9101 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 532.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 44.666400 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 44.6664 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 16.918300 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 16.9183 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -32.274300 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.2743 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 546.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 44.944636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 44.9446 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 15.003182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 15.0032 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -27.488091 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -27.4881 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 561.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 40.648222 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.6482 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 14.274556 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 14.2746 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -28.914444 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -28.9144 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 572.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 42.102727 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 42.1027 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 11.985909 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 11.9859 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -32.801727 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.8017 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 594.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 38.452000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 38.4520 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 15.681727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 15.6817 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -32.921455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.9215 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 608.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 36.920455 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 36.9205 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 17.388273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 17.3883 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -37.415455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -37.4155 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 627.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 38.997600 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 38.9976 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 20.850000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 20.8500 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -36.986900 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.9869 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 643.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 36.362900 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 36.3629 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 23.443100 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.4431 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -39.172900 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.1729 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 659.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 39.033200 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.0332 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 26.596700 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.5967 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -40.505100 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.5051 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 675.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 35.339600 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 35.3396 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 29.749000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 29.7490 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -40.614200 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.6142 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 687.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 39.787667 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.7877 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 31.900278 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.9003 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -41.078500 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -41.0785 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 707.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 34.695182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.6952 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 35.695364 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 35.6954 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -41.233818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -41.2338 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 721.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 34.649429 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.6494 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 39.322000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 39.3220 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -41.415571 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -41.4156 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 731.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 32.291000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 32.2910 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 42.020444 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 42.0204 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -39.230333 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.2303 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 742.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 35.977591 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 35.9776 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 42.985818 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 42.9858 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = -43.147045 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -43.1470 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 766.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 31.994375 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 31.9944 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 41.423250 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 41.4233 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -44.571000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -44.5710 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 776.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 28.961800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 28.9618 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 40.859400 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 40.8594 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = -46.310400 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.3104 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 783.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 28.152125 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 28.1521 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 38.136875 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 38.1369 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -47.806000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -47.8060 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 797.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 30.416750 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.4168 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 36.687375 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 36.6874 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -45.454250 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -45.4543 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 807.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 14 atoms have been selected out of 1960 SHOW: average of selected elements = 27.412429 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.4124 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 14 atoms have been selected out of 1960 SHOW: average of selected elements = 39.475786 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 39.4758 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 14 atoms have been selected out of 1960 SHOW: average of selected elements = -40.801714 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.8017 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 831.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 23.284889 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 23.2849 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 36.070056 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 36.0701 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -45.381556 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -45.3816 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 851.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 27.495818 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.4958 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 32.514091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.5141 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -44.147636 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -44.1476 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 870.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 27.657857 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.6579 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 33.546571 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 33.5466 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -40.070714 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.0707 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 880.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 24.466000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 24.4660 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 32.460250 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.4603 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -39.095875 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.0959 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 894.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 23.756944 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 23.7569 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 28.434333 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 28.4343 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -43.328667 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -43.3287 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 914.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 30.039889 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.0399 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 27.856222 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 27.8562 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -39.554278 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.5543 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 934.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 26.315571 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.3156 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 28.226000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 28.2260 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -36.588000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.5880 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 944.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 22.623600 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 22.6236 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 26.400400 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.4004 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -37.674900 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -37.6749 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 956.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 25.619091 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 25.6191 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 23.764455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.7645 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -40.202909 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.2029 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 975.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 26.680429 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.6804 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 23.148143 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.1481 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -35.937714 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -35.9377 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 985.000 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 22.448000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 22.4480 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 23.255273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.2553 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -33.406909 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -33.4069 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1007.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 22.151545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 22.1515 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 20.557182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 20.5572 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -38.509636 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -38.5096 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1029.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 25.585455 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 25.5855 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 17.774091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 17.7741 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -37.041545 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -37.0415 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1048.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 26.483500 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.4835 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 17.920000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 17.9200 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -32.712625 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -32.7126 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1062.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 29.745600 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 29.7456 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 15.660300 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 15.6603 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -34.177900 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -34.1779 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1076.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 31.596300 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 31.5963 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 18.931000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 18.9310 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -36.481100 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.4811 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1092.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 34.524909 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.5249 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 21.497727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 21.4977 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -33.452364 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -33.4524 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1111.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 31.669333 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 31.6693 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 23.627278 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.6273 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -36.371389 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.3714 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1131.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 36.448909 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 36.4489 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 27.436636 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 27.4366 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -34.324818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -34.3248 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1150.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 34.588455 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.5885 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 31.794455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.7945 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -36.136364 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.1364 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1172.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 39.155000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.1550 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 33.271600 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 33.2716 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -36.409200 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.4092 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1188.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 39.227400 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.2274 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 37.364200 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 37.3642 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -35.849500 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -35.8495 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1200.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 41.244000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 41.2440 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 37.850364 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 37.8504 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -40.218182 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.2182 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1214.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 40.831800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.8318 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 42.209600 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 42.2096 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -38.935800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -38.9358 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1226.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.568636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.5686 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 40.936727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 40.9367 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -34.851909 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -34.8519 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1241.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 45.544909 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 45.5449 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 37.201364 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 37.2014 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -36.004091 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -36.0041 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1260.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 46.133182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 46.1332 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 39.827545 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 39.8275 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -40.961455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.9615 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1282.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 49.929222 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 49.9292 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 36.645667 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 36.6457 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -39.674778 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.6748 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1293.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 46.893700 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 46.8937 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 33.715700 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 33.7157 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -38.990000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -38.9900 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1309.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 45.623429 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 45.6234 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 34.540143 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 34.5401 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -42.480571 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -42.4806 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1319.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 49.323111 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 49.3231 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 35.140111 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 35.1401 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -44.144667 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -44.1447 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1330.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 50.182800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 50.1828 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 31.212000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.2120 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -42.078300 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -42.0783 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1342.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 46.054500 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 46.0545 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = 27.837227 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 27.8372 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 22 atoms have been selected out of 1960 SHOW: average of selected elements = -42.707273 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -42.7073 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 10 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1366.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 47.147143 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 47.1471 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 32.337429 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.3374 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -47.210000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -47.2100 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1376.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.560091 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.5601 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 33.369273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 33.3693 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -46.231909 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.2319 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1395.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.702182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.7022 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 37.558636 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 37.5586 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -49.778364 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -49.7784 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1412.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 40.237000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.2370 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 35.531714 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 35.5317 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -49.965143 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -49.9651 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1422.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 37.316500 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 37.3165 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 36.100800 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 36.1008 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -47.335200 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -47.3352 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1439.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 34.509375 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.5094 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = 34.006500 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 34.0065 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 8 atoms have been selected out of 1960 SHOW: average of selected elements = -47.469750 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -47.4698 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1453.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 37.897636 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 37.8976 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 31.261545 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.2615 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -46.465818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.4658 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1467.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 33.721667 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 33.7217 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 28.561722 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 28.5617 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -46.120000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.1200 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1487.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 39.117700 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.1177 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 24.748600 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 24.7486 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -44.457000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -44.4570 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1504.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 35.134000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 35.1340 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = 20.815778 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 20.8158 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 18 atoms have been selected out of 1960 SHOW: average of selected elements = -43.339000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -43.3390 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1524.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 40.100545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.1005 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 19.735818 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 19.7358 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -42.159455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -42.1595 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1543.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 38.991000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 38.9910 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 14.084455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 14.0845 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -40.974727 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -40.9747 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1565.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 41.317545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 41.3175 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 13.300455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 13.3005 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -37.385000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -37.3850 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1580.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 43.589000 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.5890 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 17.065000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 17.0650 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = -39.288000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -39.2880 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1587.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.843818 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.8438 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 14.727273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 14.7273 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -43.036636 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -43.0366 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1609.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 43.641182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 43.6412 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 18.420091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 18.4201 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -45.555818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -45.5558 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1628.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 39.144364 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 39.1444 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 16.476000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 16.4760 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -45.965182 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -45.9652 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1647.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 37.725200 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 37.7252 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 19.839100 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 19.8391 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -47.930500 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -47.9305 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1659.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 40.411273 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 40.4113 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 23.105182 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 23.1052 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -49.501455 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -49.5015 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1681.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 36.406100 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 36.4061 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 26.201300 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.2013 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -50.281700 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -50.2817 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1697.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 37.818100 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 37.8181 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 29.963300 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 29.9633 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -51.824800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -51.8248 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 9 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1713.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 34.606800 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 34.6068 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = 31.594400 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 31.5944 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 5 atoms have been selected out of 1960 SHOW: average of selected elements = -50.484800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -50.4848 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 3 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1720.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 30.938571 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.9386 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 32.431000 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 32.4310 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -50.627143 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -50.6271 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1730.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 29.135909 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 29.1359 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 29.815636 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 29.8156 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -53.213091 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -53.2131 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1752.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 24.145909 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 24.1459 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 29.177455 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 29.1775 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -50.667818 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -50.6678 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1774.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 24.585700 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 24.5857 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = 26.816700 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 26.8167 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 10 atoms have been selected out of 1960 SHOW: average of selected elements = -54.320800 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -54.3208 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 4 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1786.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 29.664273 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 29.6643 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 25.248727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 25.2487 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -53.114091 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -53.1141 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 6 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1801.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 27.516364 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.5164 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 25.357091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 25.3571 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -48.724182 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -48.7242 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1820.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 24.387818 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 24.3878 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 22.629364 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 22.6294 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -49.849636 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -49.8496 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1837.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 28.074111 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 28.0741 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = 20.842222 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 20.8422 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 9 atoms have been selected out of 1960 SHOW: average of selected elements = -52.284333 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -52.2843 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1848.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 30.368182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 30.3682 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 21.404727 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 21.4047 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -48.789545 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -48.7895 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1862.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 26.871182 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.8712 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 19.846273 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 19.8463 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -46.629091 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.6291 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1881.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 27.151857 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 27.1519 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = 16.476571 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 16.4766 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 7 atoms have been selected out of 1960 SHOW: average of selected elements = -48.951143 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -48.9511 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 5 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1891.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 31.798091 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 31.7981 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 16.395091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 16.3951 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -49.786000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -49.7860 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 13 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1913.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 31.745933 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 31.7459 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = 16.192667 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 16.1927 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 15 atoms have been selected out of 1960 SHOW: average of selected elements = -44.497133 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -44.4971 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 8 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1931.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 26.375545 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.3755 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = 13.780091 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 13.7801 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 11 atoms have been selected out of 1960 SHOW: average of selected elements = -45.525000 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -45.5250 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 11 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco FOR ID LOOP: symbol ID set to 1950.00 (real) CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) SELRPN: 6 atoms have been selected out of 1960 SHOW: average of selected elements = 26.849667 CNSsolve> evaluate ($ave_x=$result) EVALUATE: symbol $AVE_X set to 26.8497 (real) CNSsolve> show ave(y) (byres(id $id) and known) SELRPN: 6 atoms have been selected out of 1960 SHOW: average of selected elements = 9.979500 CNSsolve> evaluate ($ave_y=$result) EVALUATE: symbol $AVE_Y set to 9.97950 (real) CNSsolve> show ave(z) (byres(id $id) and known) SELRPN: 6 atoms have been selected out of 1960 SHOW: average of selected elements = -46.124667 CNSsolve> evaluate ($ave_z=$result) EVALUATE: symbol $AVE_Z set to -46.1247 (real) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (y=$ave_y) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> do (z=$ave_z) (byres(id $id) and store1) SELRPN: 7 atoms have been selected out of 1960 CNSsolve> CNSsolve> end loop avco CNSsolve> for $id in id (tag and byres(store1)) loop avco CNSsolve> CNSsolve> show ave(x) (byres(id $id) and known) CNSsolve> evaluate ($ave_x=$result) CNSsolve> show ave(y) (byres(id $id) and known) CNSsolve> evaluate ($ave_y=$result) CNSsolve> show ave(z) (byres(id $id) and known) CNSsolve> evaluate ($ave_z=$result) CNSsolve> CNSsolve> do (x=$ave_x) (byres(id $id) and store1) CNSsolve> do (y=$ave_y) (byres(id $id) and store1) CNSsolve> do (z=$ave_z) (byres(id $id) and store1) CNSsolve> CNSsolve> end loop avco CNSsolve> CNSsolve> do (x=x+random(2.0)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (y=y+random(2.0)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (z=z+random(2.0)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> {- start parameter for the side chain building -} CNSsolve> parameter PARRDR> nbonds NBDSET> rcon=20. nbxmod=-2 repel=0.9 wmin=0.1 tolerance=1. NBDSET> rexp=2 irexp=2 inhibit=0.25 NBDSET> end PARRDR> end CNSsolve> CNSsolve> {- Friction coefficient, in 1/ps. -} CNSsolve> do (fbeta=100) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> evaluate ($bath=300.0) EVALUATE: symbol $BATH set to 300.000 (real) CNSsolve> evaluate ($nstep=500) EVALUATE: symbol $NSTEP set to 500.000 (real) CNSsolve> evaluate ($timestep=0.0005) EVALUATE: symbol $TIMESTEP set to 0.500000E-03 (real) CNSsolve> CNSsolve> do (refy=mass) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> do (mass=20) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> igroup interaction SELRPN> (store1) (store1 or known) SELRPN: 983 atoms have been selected out of 1960 SELRPN: 1960 atoms have been selected out of 1960 IGROup> end CNSsolve> CNSsolve> {- turn on initial energy terms -} CNSsolve> flags exclude * include bond angle vdw end CNSsolve> CNSsolve> minimize powell nstep=50 nprint=10 end POWELL: number of degrees of freedom= 2949 NBONDS: generating intra-molecular exclusion list with mode=-2 MAKINB: mode -2 found 983 exclusions and 0 interactions(1-4) %atoms " -1 -MET -HE3 " and " -1 -MET -HT3 " only 0.09 A apart %atoms " -7 -HIS -HB1 " and " -7 -HIS -HE1 " only 0.08 A apart %atoms " -21 -CYS -HN " and " -21 -CYS -HB1 " only 0.07 A apart %atoms " -24 -VAL -HG22" and " -24 -VAL -HG23" only 0.08 A apart %atoms " -27 -TRP -HE1 " and " -27 -TRP -HZ2 " only 0.10 A apart %atoms " -31 -LEU -HB2 " and " -31 -LEU -HD23" only 0.06 A apart %atoms " -33 -LYS -HB2 " and " -33 -LYS -HZ1 " only 0.10 A apart %atoms " -42 -VAL -HN " and " -42 -VAL -HB " only 0.06 A apart %atoms " -52 -PRO -HB1 " and " -52 -PRO -HG2 " only 0.10 A apart %atoms " -53 -CYS -HA " and " -53 -CYS -HB1 " only 0.08 A apart %atoms " -54 -ARG -HD2 " and " -54 -ARG -HH22" only 0.10 A apart %atoms " -60 -PHE -HN " and " -60 -PHE -HB1 " only 0.09 A apart %atoms " -66 -LYS -HG2 " and " -66 -LYS -HD1 " only 0.10 A apart %atoms " -71 -LEU -HG " and " -71 -LEU -HD13" only 0.06 A apart %atoms " -75 -VAL -HA " and " -75 -VAL -HG22" only 0.08 A apart %atoms " -80 -LEU -HA " and " -80 -LEU -HB1 " only 0.07 A apart %atoms " -99 -LYS -HD1 " and " -99 -LYS -HZ3 " only 0.09 A apart %atoms " -121 -LYS -HG1 " and " -121 -LYS -HG2 " only 0.09 A apart NBONDS: found 118983 intra-atom interactions NBONDS: found 18 nonbonded violations %atoms " -30 -GLN -HN " and " -30 -GLN -HB1 " only 0.08 A apart %atoms " -67 -LEU -HA " and " -67 -LEU -HB1 " only 0.06 A apart %atoms " -75 -VAL -HA " and " -75 -VAL -HG13" only 0.03 A apart %atoms " -79 -GLU -HN " and " -79 -GLU -HA " only 0.04 A apart %atoms " -95 -PHE -HA " and " -95 -PHE -HB2 " only 0.05 A apart %atoms " -121 -LYS -HB1 " and " -121 -LYS -HD1 " only 0.08 A apart NBONDS: found 117502 intra-atom interactions NBONDS: found 6 nonbonded violations %atoms " -42 -VAL -HA " and " -42 -VAL -HB " only 0.09 A apart NBONDS: found 111547 intra-atom interactions NBONDS: found 1 nonbonded violations NBONDS: found 107711 intra-atom interactions NBONDS: found 109218 intra-atom interactions --------------- cycle= 10 ------ stepsize= 0.0000 ----------------------- | Etotal =505830.751 grad(E)=593.501 E(BOND)=76481.568 E(ANGL)=240244.031 | | E(VDW )=189105.152 | ------------------------------------------------------------------------------- NBONDS: found 109818 intra-atom interactions NBONDS: found 109988 intra-atom interactions NBONDS: found 109858 intra-atom interactions --------------- cycle= 20 ------ stepsize= 0.0001 ----------------------- | Etotal =175597.903 grad(E)=334.182 E(BOND)=26392.738 E(ANGL)=60052.766 | | E(VDW )=89152.399 | ------------------------------------------------------------------------------- NBONDS: found 109649 intra-atom interactions NBONDS: found 109550 intra-atom interactions NBONDS: found 109524 intra-atom interactions --------------- cycle= 30 ------ stepsize= 0.0000 ----------------------- | Etotal =152443.569 grad(E)=315.889 E(BOND)=23899.932 E(ANGL)=46382.343 | | E(VDW )=82161.294 | ------------------------------------------------------------------------------- NBONDS: found 109618 intra-atom interactions NBONDS: found 109641 intra-atom interactions --------------- cycle= 40 ------ stepsize= 0.0002 ----------------------- | Etotal =149819.561 grad(E)=314.511 E(BOND)=24390.073 E(ANGL)=45274.261 | | E(VDW )=80155.228 | ------------------------------------------------------------------------------- --------------- cycle= 50 ------ stepsize= 0.0002 ----------------------- | Etotal =149493.932 grad(E)=314.029 E(BOND)=24369.412 E(ANGL)=45135.426 | | E(VDW )=79989.095 | ------------------------------------------------------------------------------- POWELL: STEP number limit. Normal termination POWELL: Current coordinates set to last minimum CNSsolve> CNSsolve> do (vx=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vy=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vz=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> flags exclude vdw include impr end CNSsolve> CNSsolve> dynamics cartesian Cartesian Dynamics> nstep=50 Cartesian Dynamics> timestep=$timestep Cartesian Dynamics> tcoupling=true temperature=$bath DCART: temperature coupling (TCOUpling) enabled Cartesian Dynamics> nprint=$nstep Cartesian Dynamics> cmremove=false Cartesian Dynamics> end -------------------------- Cartesian dynamics start --------------------------- | E(kin)+E(total)=614326.950 E(kin)=907.693 temperature=309.781 | | Etotal =613419.257 grad(E)=569.785 E(BOND)=24369.412 E(ANGL)=45135.426 | | E(IMPR)=543914.420 | ------------------------------------------------------------------------------- -------------------- final step= 50 at 0.02500 ps --------------------- | E(kin)+E(total)=410592.022 E(kin)=59082.916 temperature=20164.039 | | Etotal =351509.106 grad(E)=367.960 E(BOND)=45739.413 E(ANGL)=133143.705 | | E(IMPR)=172625.988 | ------------------------------------------------------------------------------- CENMAS: Information about center of free masses position [A] : 33.70832 24.72601 -37.17820 velocity [A/ps] : 0.23319 -0.90934 0.33508 ang. mom. [amu A/ps] :-430848.24824 548700.76908-145183.55937 kin. ener. [Kcal/mol] : 23.34275 CNSsolve> CNSsolve> flags include vdw end CNSsolve> CNSsolve> minimize powell nstep=50 nprint=10 end POWELL: number of degrees of freedom= 2949 NBONDS: found 108945 intra-atom interactions NBONDS: found 108618 intra-atom interactions NBONDS: found 108827 intra-atom interactions NBONDS: found 108998 intra-atom interactions --------------- cycle= 10 ------ stepsize= -0.0003 ----------------------- | Etotal =309797.119 grad(E)=362.640 E(BOND)=40122.012 E(ANGL)=72932.139 | | E(IMPR)=143400.302 E(VDW )=53342.667 | ------------------------------------------------------------------------------- NBONDS: found 109378 intra-atom interactions NBONDS: found 109389 intra-atom interactions --------------- cycle= 20 ------ stepsize= 0.0000 ----------------------- | Etotal =204836.765 grad(E)=260.298 E(BOND)=23286.576 E(ANGL)=35775.924 | | E(IMPR)=93355.248 E(VDW )=52419.017 | ------------------------------------------------------------------------------- NBONDS: found 109492 intra-atom interactions NBONDS: found 109478 intra-atom interactions NBONDS: found 109545 intra-atom interactions --------------- cycle= 30 ------ stepsize= -0.0002 ----------------------- | Etotal =172063.692 grad(E)=264.782 E(BOND)=22691.096 E(ANGL)=28553.700 | | E(IMPR)=69911.756 E(VDW )=50907.140 | ------------------------------------------------------------------------------- NBONDS: found 109528 intra-atom interactions NBONDS: found 109503 intra-atom interactions --------------- cycle= 40 ------ stepsize= -0.0001 ----------------------- | Etotal =152635.143 grad(E)=254.177 E(BOND)=21517.548 E(ANGL)=21482.076 | | E(IMPR)=60623.187 E(VDW )=49012.331 | ------------------------------------------------------------------------------- NBONDS: found 109496 intra-atom interactions NBONDS: found 109475 intra-atom interactions --------------- cycle= 50 ------ stepsize= 0.0002 ----------------------- | Etotal =142246.168 grad(E)=250.279 E(BOND)=20949.854 E(ANGL)=19530.928 | | E(IMPR)=52887.892 E(VDW )=48877.493 | ------------------------------------------------------------------------------- POWELL: STEP number limit. Normal termination POWELL: Current coordinates set to last minimum CNSsolve> CNSsolve> do (vx=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vy=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vz=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> dynamics cartesian Cartesian Dynamics> nstep=50 Cartesian Dynamics> timestep=$timestep Cartesian Dynamics> tcoupling=true temperature=$bath DCART: temperature coupling (TCOUpling) enabled Cartesian Dynamics> nprint=$nstep Cartesian Dynamics> cmremove=false Cartesian Dynamics> end -------------------------- Cartesian dynamics start --------------------------- | E(kin)+E(total)=143107.296 E(kin)=861.129 temperature=293.889 | | Etotal =142246.168 grad(E)=250.279 E(BOND)=20949.854 E(ANGL)=19530.928 | | E(IMPR)=52887.892 E(VDW )=48877.493 | ------------------------------------------------------------------------------- NBONDS: found 109549 intra-atom interactions NBONDS: found 109518 intra-atom interactions -------------------- final step= 50 at 0.02500 ps --------------------- | E(kin)+E(total)=138212.792 E(kin)=3396.771 temperature=1159.263 | | Etotal =134816.021 grad(E)=260.679 E(BOND)=21759.728 E(ANGL)=18360.165 | | E(IMPR)=46083.826 E(VDW )=48612.301 | ------------------------------------------------------------------------------- CENMAS: Information about center of free masses position [A] : 33.72129 24.73535 -37.16217 velocity [A/ps] : -0.21362 -0.12260 -0.14707 ang. mom. [amu A/ps] : 23388.79622 44620.06155 -1170.44160 kin. ener. [Kcal/mol] : 1.93339 CNSsolve> CNSsolve> parameter PARRDR> nbonds NBDSET> rcon=2. nbxmod=-3 repel=0.75 NBDSET> end PARRDR> end CNSsolve> CNSsolve> minimize powell nstep=100 nprint=25 end POWELL: number of degrees of freedom= 2949 NBONDS: generating intra-molecular exclusion list with mode=-3 MAKINB: mode -3 found 3235 exclusions and 0 interactions(1-4) NBONDS: found 107327 intra-atom interactions NBONDS: found 107834 intra-atom interactions NBONDS: found 107765 intra-atom interactions NBONDS: found 107808 intra-atom interactions NBONDS: found 107790 intra-atom interactions --------------- cycle= 25 ------ stepsize= 0.0002 ----------------------- | Etotal =45551.183 grad(E)=239.467 E(BOND)=1880.779 E(ANGL)=11901.902 | | E(IMPR)=31766.485 E(VDW )=2.017 | ------------------------------------------------------------------------------- --------------- cycle= 50 ------ stepsize= 0.0000 ----------------------- | Etotal =42356.545 grad(E)=58.706 E(BOND)=1862.569 E(ANGL)=12091.971 | | E(IMPR)=28400.213 E(VDW )=1.792 | ------------------------------------------------------------------------------- POWELL: Line search terminated POWELL: Current coordinates set to last minimum CNSsolve> CNSsolve> do (vx=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vy=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vz=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> dynamics cartesian Cartesian Dynamics> nstep=$nstep Cartesian Dynamics> timestep=$timestep Cartesian Dynamics> tcoupling=true temperature=$bath DCART: temperature coupling (TCOUpling) enabled Cartesian Dynamics> nprint=$nstep Cartesian Dynamics> cmremove=false Cartesian Dynamics> end -------------------------- Cartesian dynamics start --------------------------- | E(kin)+E(total)=43223.213 E(kin)=866.676 temperature=295.783 | | Etotal =42356.537 grad(E)=58.705 E(BOND)=1862.569 E(ANGL)=12091.966 | | E(IMPR)=28400.210 E(VDW )=1.792 | ------------------------------------------------------------------------------- NBONDS: found 107813 intra-atom interactions NBONDS: found 107827 intra-atom interactions NBONDS: found 107840 intra-atom interactions NBONDS: found 107842 intra-atom interactions NBONDS: found 107860 intra-atom interactions NBONDS: found 107855 intra-atom interactions NBONDS: found 107844 intra-atom interactions NBONDS: found 107876 intra-atom interactions NBONDS: found 107816 intra-atom interactions NBONDS: found 107740 intra-atom interactions NBONDS: found 107781 intra-atom interactions NBONDS: found 107817 intra-atom interactions NBONDS: found 107726 intra-atom interactions NBONDS: found 107713 intra-atom interactions NBONDS: found 107754 intra-atom interactions NBONDS: found 107752 intra-atom interactions NBONDS: found 107746 intra-atom interactions NBONDS: found 107740 intra-atom interactions NBONDS: found 107737 intra-atom interactions NBONDS: found 107725 intra-atom interactions NBONDS: found 107743 intra-atom interactions NBONDS: found 107729 intra-atom interactions NBONDS: found 107739 intra-atom interactions NBONDS: found 107767 intra-atom interactions NBONDS: found 107732 intra-atom interactions NBONDS: found 107750 intra-atom interactions NBONDS: found 107768 intra-atom interactions NBONDS: found 107770 intra-atom interactions -------------------- final step= 500 at 0.25000 ps --------------------- | E(kin)+E(total)=2746.174 E(kin)=1030.580 temperature=351.720 | | Etotal =1715.594 grad(E)=31.572 E(BOND)=50.394 E(ANGL)=1513.178 | | E(IMPR)=147.212 E(VDW )=4.810 | ------------------------------------------------------------------------------- CENMAS: Information about center of free masses position [A] : 33.72289 24.72920 -37.16542 velocity [A/ps] : -0.04732 0.09662 -0.04872 ang. mom. [amu A/ps] : -41784.72957 -14985.81442 34808.19246 kin. ener. [Kcal/mol] : 0.32774 CNSsolve> CNSsolve> {- turn on all energy terms -} CNSsolve> flags include dihe ? end EFLAGS: the following energy flags are set EFLAGS: BOND ANGL DIHE IMPR VDW CNSsolve> CNSsolve> {- set repel to ~vdw radii -} CNSsolve> parameter PARRDR> nbonds NBDSET> repel=0.89 NBDSET> end PARRDR> end CNSsolve> CNSsolve> minimize powell nstep=500 nprint=50 end POWELL: number of degrees of freedom= 2949 NBONDS: generating intra-molecular exclusion list with mode=-3 MAKINB: mode -3 found 3235 exclusions and 0 interactions(1-4) NBONDS: found 107770 intra-atom interactions NBONDS: found 107738 intra-atom interactions --------------- cycle= 50 ------ stepsize= 0.0000 ----------------------- | Etotal =439.310 grad(E)=17.864 E(BOND)=23.157 E(ANGL)=249.399 | | E(DIHE)=74.710 E(IMPR)=14.692 E(VDW )=77.352 | ------------------------------------------------------------------------------- POWELL: Line search terminated POWELL: Current coordinates set to last minimum CNSsolve> CNSsolve> flags exclude * include bond angl impr dihe vdw end CNSsolve> CNSsolve> {- return masses to something sensible -} CNSsolve> do (mass=refy) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> do (vx=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vy=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> do (vz=maxwell($bath)) (store1) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> CNSsolve> dynamics cartesian Cartesian Dynamics> nstep=$nstep Cartesian Dynamics> timestep=$timestep Cartesian Dynamics> tcoupling=true temperature=$bath DCART: temperature coupling (TCOUpling) enabled Cartesian Dynamics> nprint=$nstep Cartesian Dynamics> cmremove=false Cartesian Dynamics> end -------------------------- Cartesian dynamics start --------------------------- | E(kin)+E(total)=1323.434 E(kin)=884.125 temperature=301.737 | | Etotal =439.310 grad(E)=17.864 E(BOND)=23.157 E(ANGL)=249.399 | | E(DIHE)=74.710 E(IMPR)=14.692 E(VDW )=77.352 | ------------------------------------------------------------------------------- NBONDS: found 107740 intra-atom interactions NBONDS: found 107729 intra-atom interactions NBONDS: found 107734 intra-atom interactions NBONDS: found 107718 intra-atom interactions NBONDS: found 107720 intra-atom interactions NBONDS: found 107738 intra-atom interactions NBONDS: found 107754 intra-atom interactions NBONDS: found 107723 intra-atom interactions NBONDS: found 107703 intra-atom interactions NBONDS: found 107704 intra-atom interactions NBONDS: found 107688 intra-atom interactions NBONDS: found 107679 intra-atom interactions NBONDS: found 107685 intra-atom interactions NBONDS: found 107710 intra-atom interactions NBONDS: found 107719 intra-atom interactions NBONDS: found 107749 intra-atom interactions NBONDS: found 107772 intra-atom interactions NBONDS: found 107781 intra-atom interactions NBONDS: found 107760 intra-atom interactions NBONDS: found 107723 intra-atom interactions NBONDS: found 107705 intra-atom interactions NBONDS: found 107683 intra-atom interactions NBONDS: found 107646 intra-atom interactions NBONDS: found 107632 intra-atom interactions NBONDS: found 107638 intra-atom interactions NBONDS: found 107658 intra-atom interactions NBONDS: found 107701 intra-atom interactions NBONDS: found 107736 intra-atom interactions NBONDS: found 107793 intra-atom interactions NBONDS: found 107788 intra-atom interactions NBONDS: found 107793 intra-atom interactions NBONDS: found 107763 intra-atom interactions NBONDS: found 107751 intra-atom interactions NBONDS: found 107676 intra-atom interactions NBONDS: found 107645 intra-atom interactions NBONDS: found 107638 intra-atom interactions NBONDS: found 107676 intra-atom interactions NBONDS: found 107700 intra-atom interactions NBONDS: found 107721 intra-atom interactions NBONDS: found 107747 intra-atom interactions NBONDS: found 107770 intra-atom interactions NBONDS: found 107785 intra-atom interactions NBONDS: found 107795 intra-atom interactions NBONDS: found 107766 intra-atom interactions NBONDS: found 107736 intra-atom interactions NBONDS: found 107699 intra-atom interactions NBONDS: found 107686 intra-atom interactions NBONDS: found 107663 intra-atom interactions NBONDS: found 107690 intra-atom interactions NBONDS: found 107728 intra-atom interactions NBONDS: found 107745 intra-atom interactions NBONDS: found 107788 intra-atom interactions NBONDS: found 107814 intra-atom interactions NBONDS: found 107840 intra-atom interactions NBONDS: found 107827 intra-atom interactions NBONDS: found 107800 intra-atom interactions NBONDS: found 107755 intra-atom interactions NBONDS: found 107725 intra-atom interactions NBONDS: found 107718 intra-atom interactions NBONDS: found 107686 intra-atom interactions NBONDS: found 107725 intra-atom interactions NBONDS: found 107746 intra-atom interactions NBONDS: found 107778 intra-atom interactions NBONDS: found 107811 intra-atom interactions NBONDS: found 107801 intra-atom interactions NBONDS: found 107767 intra-atom interactions NBONDS: found 107752 intra-atom interactions NBONDS: found 107730 intra-atom interactions NBONDS: found 107708 intra-atom interactions NBONDS: found 107712 intra-atom interactions NBONDS: found 107729 intra-atom interactions NBONDS: found 107749 intra-atom interactions NBONDS: found 107777 intra-atom interactions NBONDS: found 107781 intra-atom interactions NBONDS: found 107778 intra-atom interactions NBONDS: found 107768 intra-atom interactions NBONDS: found 107764 intra-atom interactions NBONDS: found 107741 intra-atom interactions NBONDS: found 107723 intra-atom interactions NBONDS: found 107704 intra-atom interactions NBONDS: found 107678 intra-atom interactions NBONDS: found 107672 intra-atom interactions NBONDS: found 107681 intra-atom interactions NBONDS: found 107713 intra-atom interactions NBONDS: found 107735 intra-atom interactions NBONDS: found 107740 intra-atom interactions NBONDS: found 107748 intra-atom interactions NBONDS: found 107718 intra-atom interactions NBONDS: found 107693 intra-atom interactions NBONDS: found 107678 intra-atom interactions NBONDS: found 107667 intra-atom interactions NBONDS: found 107666 intra-atom interactions NBONDS: found 107685 intra-atom interactions NBONDS: found 107721 intra-atom interactions NBONDS: found 107742 intra-atom interactions NBONDS: found 107761 intra-atom interactions NBONDS: found 107752 intra-atom interactions NBONDS: found 107705 intra-atom interactions NBONDS: found 107708 intra-atom interactions NBONDS: found 107688 intra-atom interactions NBONDS: found 107673 intra-atom interactions NBONDS: found 107670 intra-atom interactions NBONDS: found 107690 intra-atom interactions NBONDS: found 107712 intra-atom interactions NBONDS: found 107724 intra-atom interactions NBONDS: found 107739 intra-atom interactions NBONDS: found 107748 intra-atom interactions NBONDS: found 107702 intra-atom interactions NBONDS: found 107689 intra-atom interactions NBONDS: found 107676 intra-atom interactions NBONDS: found 107650 intra-atom interactions NBONDS: found 107683 intra-atom interactions NBONDS: found 107700 intra-atom interactions NBONDS: found 107710 intra-atom interactions NBONDS: found 107691 intra-atom interactions NBONDS: found 107672 intra-atom interactions NBONDS: found 107654 intra-atom interactions NBONDS: found 107647 intra-atom interactions NBONDS: found 107622 intra-atom interactions NBONDS: found 107622 intra-atom interactions NBONDS: found 107645 intra-atom interactions NBONDS: found 107714 intra-atom interactions NBONDS: found 107722 intra-atom interactions NBONDS: found 107715 intra-atom interactions NBONDS: found 107662 intra-atom interactions NBONDS: found 107662 intra-atom interactions NBONDS: found 107629 intra-atom interactions NBONDS: found 107668 intra-atom interactions NBONDS: found 107680 intra-atom interactions NBONDS: found 107696 intra-atom interactions NBONDS: found 107692 intra-atom interactions NBONDS: found 107682 intra-atom interactions NBONDS: found 107676 intra-atom interactions NBONDS: found 107638 intra-atom interactions NBONDS: found 107647 intra-atom interactions NBONDS: found 107678 intra-atom interactions NBONDS: found 107682 intra-atom interactions NBONDS: found 107693 intra-atom interactions NBONDS: found 107693 intra-atom interactions NBONDS: found 107687 intra-atom interactions NBONDS: found 107672 intra-atom interactions NBONDS: found 107689 intra-atom interactions NBONDS: found 107698 intra-atom interactions NBONDS: found 107677 intra-atom interactions NBONDS: found 107662 intra-atom interactions NBONDS: found 107644 intra-atom interactions NBONDS: found 107656 intra-atom interactions NBONDS: found 107670 intra-atom interactions NBONDS: found 107672 intra-atom interactions NBONDS: found 107677 intra-atom interactions NBONDS: found 107669 intra-atom interactions NBONDS: found 107670 intra-atom interactions NBONDS: found 107671 intra-atom interactions NBONDS: found 107685 intra-atom interactions NBONDS: found 107671 intra-atom interactions NBONDS: found 107663 intra-atom interactions NBONDS: found 107658 intra-atom interactions NBONDS: found 107694 intra-atom interactions NBONDS: found 107688 intra-atom interactions NBONDS: found 107661 intra-atom interactions NBONDS: found 107647 intra-atom interactions NBONDS: found 107612 intra-atom interactions NBONDS: found 107609 intra-atom interactions NBONDS: found 107639 intra-atom interactions NBONDS: found 107686 intra-atom interactions NBONDS: found 107714 intra-atom interactions NBONDS: found 107679 intra-atom interactions NBONDS: found 107652 intra-atom interactions NBONDS: found 107626 intra-atom interactions NBONDS: found 107638 intra-atom interactions NBONDS: found 107643 intra-atom interactions NBONDS: found 107657 intra-atom interactions NBONDS: found 107684 intra-atom interactions NBONDS: found 107690 intra-atom interactions NBONDS: found 107681 intra-atom interactions NBONDS: found 107674 intra-atom interactions NBONDS: found 107644 intra-atom interactions NBONDS: found 107662 intra-atom interactions NBONDS: found 107680 intra-atom interactions NBONDS: found 107703 intra-atom interactions NBONDS: found 107681 intra-atom interactions NBONDS: found 107678 intra-atom interactions NBONDS: found 107661 intra-atom interactions NBONDS: found 107647 intra-atom interactions NBONDS: found 107637 intra-atom interactions NBONDS: found 107657 intra-atom interactions NBONDS: found 107699 intra-atom interactions NBONDS: found 107719 intra-atom interactions NBONDS: found 107704 intra-atom interactions NBONDS: found 107674 intra-atom interactions NBONDS: found 107659 intra-atom interactions NBONDS: found 107674 intra-atom interactions NBONDS: found 107688 intra-atom interactions NBONDS: found 107732 intra-atom interactions NBONDS: found 107760 intra-atom interactions NBONDS: found 107750 intra-atom interactions NBONDS: found 107729 intra-atom interactions NBONDS: found 107711 intra-atom interactions NBONDS: found 107681 intra-atom interactions NBONDS: found 107685 intra-atom interactions NBONDS: found 107711 intra-atom interactions NBONDS: found 107729 intra-atom interactions NBONDS: found 107773 intra-atom interactions NBONDS: found 107772 intra-atom interactions NBONDS: found 107738 intra-atom interactions NBONDS: found 107718 intra-atom interactions NBONDS: found 107740 intra-atom interactions NBONDS: found 107784 intra-atom interactions NBONDS: found 107762 intra-atom interactions NBONDS: found 107726 intra-atom interactions NBONDS: found 107717 intra-atom interactions NBONDS: found 107744 intra-atom interactions NBONDS: found 107745 intra-atom interactions NBONDS: found 107764 intra-atom interactions NBONDS: found 107747 intra-atom interactions NBONDS: found 107718 intra-atom interactions NBONDS: found 107737 intra-atom interactions NBONDS: found 107758 intra-atom interactions NBONDS: found 107780 intra-atom interactions NBONDS: found 107760 intra-atom interactions NBONDS: found 107751 intra-atom interactions NBONDS: found 107734 intra-atom interactions NBONDS: found 107727 intra-atom interactions NBONDS: found 107739 intra-atom interactions NBONDS: found 107730 intra-atom interactions NBONDS: found 107741 intra-atom interactions NBONDS: found 107752 intra-atom interactions NBONDS: found 107746 intra-atom interactions NBONDS: found 107735 intra-atom interactions NBONDS: found 107722 intra-atom interactions -------------------- final step= 500 at 0.25000 ps --------------------- | E(kin)+E(total)=2424.403 E(kin)=354.214 temperature=120.887 | | Etotal =2070.190 grad(E)=49.816 E(BOND)=1199.669 E(ANGL)=751.525 | | E(DIHE)=18.306 E(IMPR)=27.788 E(VDW )=72.901 | ------------------------------------------------------------------------------- CENMAS: Information about center of free masses position [A] : 33.47821 24.27160 -37.46770 velocity [A/ps] : -0.38145 -0.13841 0.22626 ang. mom. [amu A/ps] : 2571.32450 -1095.66775 5624.46410 kin. ener. [Kcal/mol] : 0.26333 CNSsolve> CNSsolve> {- some final minimisation -} CNSsolve> minimize powell POWELL> nstep=500 POWELL> drop=40.0 POWELL> nprint=50 POWELL> end POWELL: number of degrees of freedom= 2949 NBONDS: found 107743 intra-atom interactions NBONDS: found 107725 intra-atom interactions --------------- cycle= 50 ------ stepsize= 0.0000 ----------------------- | Etotal =689.746 grad(E)=27.031 E(BOND)=123.586 E(ANGL)=459.047 | | E(DIHE)=18.293 E(IMPR)=22.109 E(VDW )=66.711 | ------------------------------------------------------------------------------- POWELL: Line search terminated POWELL: Current coordinates set to last minimum CNSsolve> CNSsolve> print thres=0.02 bonds (atom-i |atom-j ) dist. equil. delta energy const. ( 54 NE | 54 HE ) 1.328 0.980 0.348 121.353 1000.000 Number of violations greater 0.020: 1 RMS deviation= 0.011 CNSsolve> print thres=5. angles (atom-i |atom-j |atom-k ) angle equil. delta energy const. ( 54 CD | 54 NE | 54 HE ) 149.807 118.099 31.709 153.138 500.000 ( 54 HE | 54 NE | 54 CZ ) 85.476 119.249 -33.773 173.725 500.000 Number of violations greater 5.000: 2 RMS deviation= 1.157 CNSsolve> CNSsolve> end if CNSsolve> CNSsolve> fix selection=( none ) end SELRPN: 0 atoms have been selected out of 1960 CNSsolve> CNSsolve> end if CNSsolve> CNSsolve> set echo=false end SELRPN: 0 atoms have been selected out of 1960 SHOW: zero atoms selected NEXTCD: condition evaluated as true SELRPN: 0 atoms have been selected out of 1960 CNSsolve> CNSsolve> if (&set_bfactor=true) then NEXTCD: condition evaluated as false CNSsolve> do (b=&bfactor) ( all ) CNSsolve> else CNSsolve> show ave(b) (known and not(store1)) SELRPN: 977 atoms have been selected out of 1960 SHOW: average of selected elements = 0.000000 CNSsolve> do (b=$result) (store1 and (attr b < 0.01)) SELRPN: 983 atoms have been selected out of 1960 CNSsolve> end if CNSsolve> CNSsolve> if (&set_occupancy=true) then NEXTCD: condition evaluated as false CNSsolve> do (q=&occupancy) ( all ) CNSsolve> end if CNSsolve> CNSsolve> set echo=false end SELRPN: 983 atoms have been selected out of 1960 SHOW: sum over selected elements = 983.000000 NEXTCD: condition evaluated as false CNSsolve> CNSsolve> set remarks=reset end CNSsolve> CNSsolve> buffer message BUFFER> to=remarks BUFFER> dump BUFFER> end CNSsolve> CNSsolve> write coordinates output=&coordinate_outfile end ASSFIL: file 1xxx_14_cns.pdb opened. CNSsolve> CNSsolve>stop HEAP: maximum use = 1238676 current use = 0 bytes HEAP: maximum overhead = 928 current overhead = 64 bytes ============================================================ Maximum dynamic memory allocation: 1238676 bytes Maximum dynamic memory overhead: 928 bytes Program started at: 01:16:53 on 11-Sep-04 Program stopped at: 01:17:17 on 11-Sep-04 CPU time used: 24.3700 seconds ============================================================