| [0b990d] | 1 | //
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 | 2 | // out.cc
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 | 3 | //
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 | 4 | // Modifications are
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 | 5 | // Copyright (C) 1996 Limit Point Systems, Inc.
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 | 6 | //
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 | 7 | // Author: Edward Seidl <seidl@janed.com>
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 | 8 | // Maintainer: LPS
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 | 9 | //
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 | 10 | // This file is part of the SC Toolkit.
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 | 11 | //
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 | 12 | // The SC Toolkit is free software; you can redistribute it and/or modify
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 | 13 | // it under the terms of the GNU Library General Public License as published by
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 | 14 | // the Free Software Foundation; either version 2, or (at your option)
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 | 15 | // any later version.
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 | 16 | //
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 | 17 | // The SC Toolkit is distributed in the hope that it will be useful,
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 | 18 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 19 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 20 | // GNU Library General Public License for more details.
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 | 21 | //
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 | 22 | // You should have received a copy of the GNU Library General Public License
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 | 23 | // along with the SC Toolkit; see the file COPYING.LIB.  If not, write to
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 | 24 | // the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
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 | 25 | //
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 | 26 | // The U.S. Government is granted a limited license as per AL 91-7.
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 | 27 | //
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 | 28 | 
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 | 29 | /* out.cc -- implementation of the out-of-plane internal coordinate class
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 | 30 |  *
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 | 31 |  *      THIS SOFTWARE FITS THE DESCRIPTION IN THE U.S. COPYRIGHT ACT OF A
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 | 32 |  *      "UNITED STATES GOVERNMENT WORK".  IT WAS WRITTEN AS A PART OF THE
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 | 33 |  *      AUTHOR'S OFFICIAL DUTIES AS A GOVERNMENT EMPLOYEE.  THIS MEANS IT
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 | 34 |  *      CANNOT BE COPYRIGHTED.  THIS SOFTWARE IS FREELY AVAILABLE TO THE
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 | 35 |  *      PUBLIC FOR USE WITHOUT A COPYRIGHT NOTICE, AND THERE ARE NO
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 | 36 |  *      RESTRICTIONS ON ITS USE, NOW OR SUBSEQUENTLY.
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 | 37 |  *
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 | 38 |  *  Author:
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 | 39 |  *      E. T. Seidl
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 | 40 |  *      Bldg. 12A, Rm. 2033
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 | 41 |  *      Computer Systems Laboratory
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 | 42 |  *      Division of Computer Research and Technology
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 | 43 |  *      National Institutes of Health
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 | 44 |  *      Bethesda, Maryland 20892
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 | 45 |  *      Internet: seidl@alw.nih.gov
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 | 46 |  *      February, 1993
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 | 47 |  */
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 | 48 | 
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 | 49 | #include <string.h>
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 | 50 | #include <math.h>
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 | 51 | 
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 | 52 | #include <chemistry/molecule/simple.h>
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 | 53 | #include <chemistry/molecule/localdef.h>
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 | 54 | 
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 | 55 | using namespace sc;
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 | 56 | 
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 | 57 | static ClassDesc OutSimpleCo_cd(
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 | 58 |   typeid(OutSimpleCo),"OutSimpleCo",1,"public SimpleCo",
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 | 59 |   create<OutSimpleCo>, create<OutSimpleCo>, create<OutSimpleCo>);
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 | 60 | SimpleCo_IMPL(OutSimpleCo)
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 | 61 | 
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 | 62 | OutSimpleCo::OutSimpleCo() : SimpleCo(4) {}
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 | 63 | 
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 | 64 | OutSimpleCo::OutSimpleCo(const OutSimpleCo& s)
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 | 65 |   : SimpleCo(4)
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 | 66 | {
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 | 67 |   *this=s;
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 | 68 | }
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 | 69 | 
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 | 70 | OutSimpleCo::OutSimpleCo(const char *refr, int a1, int a2, int a3, int a4)
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 | 71 |   : SimpleCo(4,refr)
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 | 72 | {
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 | 73 |   atoms[0]=a1; atoms[1]=a2; atoms[2]=a3; atoms[3]=a4;
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 | 74 | }
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 | 75 | 
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 | 76 | OutSimpleCo::OutSimpleCo(const Ref<KeyVal> &kv) :
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 | 77 |   SimpleCo(kv,4)
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 | 78 | {
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 | 79 | }
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 | 80 | 
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 | 81 | OutSimpleCo::~OutSimpleCo()
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 | 82 | {
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 | 83 | }
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 | 84 | 
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 | 85 | OutSimpleCo&
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 | 86 | OutSimpleCo::operator=(const OutSimpleCo& s)
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 | 87 | {
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 | 88 |   if(label_) delete[] label_;
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 | 89 |   label_=new char[strlen(s.label_)+1];
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 | 90 |   strcpy(label_,s.label_);
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 | 91 |   atoms[0]=s.atoms[0]; atoms[1]=s.atoms[1]; atoms[2]=s.atoms[2];
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 | 92 |   atoms[3]=s.atoms[3];
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 | 93 |   return *this;
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 | 94 | }
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 | 95 | 
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 | 96 | double
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 | 97 | OutSimpleCo::calc_intco(Molecule& m, double *bmat, double coeff)
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 | 98 | {
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 | 99 |   int a=atoms[0]-1; int b=atoms[1]-1; int c=atoms[2]-1; int d=atoms[3]-1;
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 | 100 |   SCVector3 u1,u2,u3,z1;
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 | 101 | 
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 | 102 |   SCVector3 ra(m.r(a));
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 | 103 |   SCVector3 rb(m.r(b));
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 | 104 |   SCVector3 rc(m.r(c));
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 | 105 |   SCVector3 rd(m.r(d));
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 | 106 | 
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 | 107 |   u1 = ra-rb;
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 | 108 |   u1.normalize();
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 | 109 |   u2 = rc-rb;
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 | 110 |   u2.normalize();
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 | 111 |   u3 = rd-rb;
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 | 112 |   u3.normalize();
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 | 113 | 
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 | 114 |   z1 = u2.perp_unit(u3);
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 | 115 |   double st=u1.dot(z1);
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 | 116 |   double ct=s2(st);
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 | 117 | 
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 | 118 |   value_ = (st<0) ? -acos(ct) : acos(ct);
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 | 119 | 
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 | 120 |   if (bmat) {
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 | 121 |     double uu,vv;
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 | 122 |     SCVector3 ww,xx,zz;
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 | 123 |     double cphi1 = u2.dot(u3);
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 | 124 |     double sphi1 = s2(cphi1);
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 | 125 |     double cphi2 = u3.dot(u1);
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 | 126 |     double cphi3 = u2.dot(u1);
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 | 127 |     double den = ct * sphi1*sphi1;
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 | 128 |     double sthta2 = (cphi1*cphi2-cphi3)/
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 | 129 |               (den*rc.dist(rb));
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 | 130 |     double sthta3 = (cphi1*cphi3-cphi2)/
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 | 131 |               (den*rd.dist(rb));
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 | 132 | #if OLD_BMAT
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 | 133 |     sthta2 /= bohr;
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 | 134 |     sthta3 /= bohr;
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 | 135 | #endif
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 | 136 |     int j;
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 | 137 |     for(j=0; j < 3; j++) {
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 | 138 |       ww[j] = z1[j]*sthta2;
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 | 139 |       zz[j] = z1[j]*sthta3;
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 | 140 |     }
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 | 141 |     xx = z1.perp_unit(u1);
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 | 142 |     z1 = u1.perp_unit(xx);
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 | 143 |     double r1i = 1.0/ra.dist(rb);
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 | 144 | #if OLD_BMAT
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 | 145 |     r1i /= bohr;
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 | 146 | #endif    
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 | 147 |     for(j=0; j < 3; j++) {
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 | 148 |       uu = z1[j]*r1i;
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 | 149 |       vv = -uu-ww[j]-zz[j];
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 | 150 |       bmat[a*3+j] += coeff*uu;
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 | 151 |       bmat[b*3+j] += coeff*vv;
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 | 152 |       bmat[c*3+j] += coeff*ww[j];
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 | 153 |       bmat[d*3+j] += coeff*zz[j];
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 | 154 |     }
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 | 155 |   }
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 | 156 | 
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 | 157 |   return value_;
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 | 158 | }
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 | 159 | 
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 | 160 | 
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 | 161 | double
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 | 162 | OutSimpleCo::calc_force_con(Molecule& m)
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 | 163 | {
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 | 164 |   int x=atoms[0]-1;
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 | 165 |   int a=atoms[1]-1; int b=atoms[2]-1; int c=atoms[3]-1;
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 | 166 | 
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 | 167 |   SCVector3 ra(m.r(a));
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 | 168 |   SCVector3 rx(m.r(x));
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 | 169 | 
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 | 170 |   double rad_ab =   m.atominfo()->atomic_radius(m.Z(a))
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 | 171 |                   + m.atominfo()->atomic_radius(m.Z(b));
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 | 172 | 
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 | 173 |   double rad_ac =   m.atominfo()->atomic_radius(m.Z(a))
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 | 174 |                   + m.atominfo()->atomic_radius(m.Z(c));
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 | 175 | 
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 | 176 |   double rad_ax =   m.atominfo()->atomic_radius(m.Z(a))
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 | 177 |                   + m.atominfo()->atomic_radius(m.Z(x));
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 | 178 | 
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 | 179 |   double r_ax = ra.dist(rx);
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 | 180 | 
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 | 181 |   calc_intco(m);
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 | 182 | 
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 | 183 |   double k = 0.0025 + 0.0061*pow((rad_ab*rad_ac),0.80)*pow(cos(value()),4.0) *
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 | 184 |                            exp(-3.0*(r_ax-rad_ax));
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 | 185 | 
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 | 186 | #if OLD_BMAT
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 | 187 |   // return force constant in mdyn*ang/rad^2
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 | 188 |   return k*4.359813653;
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 | 189 | #else  
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 | 190 |   return k;
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 | 191 | #endif  
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 | 192 | }
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 | 193 | 
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 | 194 | const char *
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 | 195 | OutSimpleCo::ctype() const
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 | 196 | {
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 | 197 |   return "OUT";
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 | 198 | }
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 | 199 | 
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 | 200 | double
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 | 201 | OutSimpleCo::radians() const
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 | 202 | {
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 | 203 |   return value_;
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 | 204 | }
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 | 205 | 
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 | 206 | double
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 | 207 | OutSimpleCo::degrees() const
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 | 208 | {
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 | 209 |   return value_*rtd;
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 | 210 | }
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 | 211 | 
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 | 212 | double
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 | 213 | OutSimpleCo::preferred_value() const
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 | 214 | {
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 | 215 |   return value_*rtd;
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 | 216 | }
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 | 217 | 
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 | 218 | /////////////////////////////////////////////////////////////////////////////
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 | 219 | 
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 | 220 | // Local Variables:
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 | 221 | // mode: c++
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 | 222 | // c-file-style: "ETS"
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 | 223 | // End:
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