| [0b990d] | 1 |
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| 2 | MPQC: Massively Parallel Quantum Chemistry
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| 3 | Version 2.3.0-alpha
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| 4 |
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| 5 | Machine: i686-pc-linux-gnu
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| 6 | User: cljanss@n119
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| 7 | Start Time: Sun Jan 9 18:49:35 2005
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| 8 |
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| 9 | Using ProcMessageGrp for message passing (number of nodes = 1).
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| 10 | Using PthreadThreadGrp for threading (number of threads = 1).
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| 11 | Using ProcMemoryGrp for distributed shared memory.
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| 12 | Total number of processors = 1
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| 13 |
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| 14 | Using IntegralV3 by default for molecular integrals evaluation
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| 15 |
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| 16 | Reading file /home/cljanss/src/SC/lib/atominfo.kv.
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| 17 |
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| 18 | IntCoorGen: generated 3 coordinates.
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| 19 | Forming optimization coordinates:
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| 20 | SymmMolecularCoor::form_variable_coordinates()
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| 21 | expected 3 coordinates
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| 22 | found 2 variable coordinates
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| 23 | found 0 constant coordinates
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| 24 | Reading file /home/cljanss/src/SC/lib/basis/pc-2.kv.
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| 25 | Reading file /home/cljanss/src/SC/lib/basis/sto-3g.kv.
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| 26 |
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| 27 | CLSCF::init: total charge = 0
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| 28 |
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| 29 | docc = [ 5 0 1 2 ]
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| 30 | nbasis = 11
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| 31 |
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| 32 | CLSCF::init: total charge = 0
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| 33 |
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| 34 | docc = [ 5 0 1 2 ]
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| 35 | nbasis = 62
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| 36 |
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| 37 | Molecular formula H2Si
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| 38 |
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| 39 | MPQC options:
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| 40 | matrixkit = <ReplSCMatrixKit>
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| 41 | filename = basis2_sih2scfpc2c2v
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| 42 | restart_file = basis2_sih2scfpc2c2v.ckpt
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| 43 | restart = no
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| 44 | checkpoint = no
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| 45 | savestate = no
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| 46 | do_energy = yes
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| 47 | do_gradient = yes
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| 48 | optimize = no
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| 49 | write_pdb = no
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| 50 | print_mole = yes
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| 51 | print_timings = yes
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| 52 |
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| 53 |
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| 54 | SCF::compute: energy accuracy = 1.0000000e-08
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| 55 |
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| 56 | integral intermediate storage = 852748 bytes
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| 57 | integral cache = 31116004 bytes
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| 58 | Projecting guess wavefunction into the present basis set
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| 59 |
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| 60 | SCF::compute: energy accuracy = 1.0000000e-06
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| 61 |
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| 62 | integral intermediate storage = 20487 bytes
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| 63 | integral cache = 31978457 bytes
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| 64 | Starting from core Hamiltonian guess
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| 65 |
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| 66 | Using symmetric orthogonalization.
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| 67 | n(basis): 6 0 2 3
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| 68 | Maximum orthogonalization residual = 1.80389
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| 69 | Minimum orthogonalization residual = 0.330238
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| 70 | nuclear repulsion energy = 10.0729498809
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| 71 |
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| 72 | 2796 integrals
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| 73 | iter 1 energy = -286.3674397399 delta = 6.84097e-01
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| 74 | 2787 integrals
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| 75 | iter 2 energy = -286.6597972932 delta = 1.78080e-01
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| 76 | 2797 integrals
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| 77 | iter 3 energy = -286.6643664327 delta = 2.27757e-02
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| 78 | 2795 integrals
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| 79 | iter 4 energy = -286.6644994187 delta = 4.95268e-03
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| 80 | 2797 integrals
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| 81 | iter 5 energy = -286.6645049747 delta = 9.45339e-04
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| 82 | 2771 integrals
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| 83 | iter 6 energy = -286.6645050715 delta = 1.07830e-04
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| 84 | 2797 integrals
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| 85 | iter 7 energy = -286.6645050354 delta = 6.79645e-06
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| 86 |
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| 87 | HOMO is 5 A1 = -0.228843
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| 88 | LUMO is 2 B1 = 0.220710
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| 89 |
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| 90 | total scf energy = -286.6645050354
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| 91 |
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| 92 | Projecting the guess density.
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| 93 |
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| 94 | The number of electrons in the guess density = 16
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| 95 | Using symmetric orthogonalization.
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| 96 | n(basis): 25 7 12 18
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| 97 | Maximum orthogonalization residual = 4.65751
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| 98 | Minimum orthogonalization residual = 0.0107248
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| 99 | The number of electrons in the projected density = 15.9746
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| 100 |
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| 101 | nuclear repulsion energy = 10.0729498809
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| 102 |
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| 103 | 1011377 integrals
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| 104 | iter 1 energy = -289.7977426763 delta = 1.13773e-01
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| 105 | 1128890 integrals
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| 106 | iter 2 energy = -290.0180101050 delta = 2.34017e-02
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| 107 | 1103646 integrals
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| 108 | iter 3 energy = -290.0243230879 delta = 3.86029e-03
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| 109 | 1164243 integrals
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| 110 | iter 4 energy = -290.0248467833 delta = 1.30002e-03
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| 111 | 1127155 integrals
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| 112 | iter 5 energy = -290.0249259642 delta = 7.91555e-04
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| 113 | 1083141 integrals
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| 114 | iter 6 energy = -290.0249282386 delta = 1.49524e-04
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| 115 | 1170855 integrals
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| 116 | iter 7 energy = -290.0249283608 delta = 3.87933e-05
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| 117 | 1082421 integrals
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| 118 | iter 8 energy = -290.0249283626 delta = 4.65086e-06
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| 119 | 1172923 integrals
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| 120 | iter 9 energy = -290.0249283627 delta = 6.85973e-07
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| 121 | 1099008 integrals
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| 122 | iter 10 energy = -290.0249283627 delta = 1.81727e-07
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| 123 | 1173616 integrals
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| 124 | iter 11 energy = -290.0249283627 delta = 1.45348e-08
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| 125 |
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| 126 | HOMO is 5 A1 = -0.335107
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| 127 | LUMO is 2 B1 = 0.002313
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| 128 |
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| 129 | total scf energy = -290.0249283627
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| 130 |
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| 131 | SCF::compute: gradient accuracy = 1.0000000e-06
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| 132 |
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| 133 | Total Gradient:
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| 134 | 1 Si -0.0000000000 -0.0000000000 -0.0008180593
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| 135 | 2 H 0.0000000000 0.0002239126 0.0004090297
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| 136 | 3 H 0.0000000000 -0.0002239126 0.0004090297
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| 137 | Value of the MolecularEnergy: -290.0249283627
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| 138 |
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| 139 |
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| 140 | Gradient of the MolecularEnergy:
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| 141 | 1 -0.0007218168
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| 142 | 2 0.0002079755
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| 143 |
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| 144 | Function Parameters:
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| 145 | value_accuracy = 1.378733e-09 (1.000000e-08) (computed)
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| 146 | gradient_accuracy = 1.378733e-07 (1.000000e-06) (computed)
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| 147 | hessian_accuracy = 0.000000e+00 (1.000000e-04)
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| 148 |
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| 149 | Molecular Coordinates:
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| 150 | IntMolecularCoor Parameters:
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| 151 | update_bmat = no
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| 152 | scale_bonds = 1.0000000000
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| 153 | scale_bends = 1.0000000000
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| 154 | scale_tors = 1.0000000000
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| 155 | scale_outs = 1.0000000000
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| 156 | symmetry_tolerance = 1.000000e-05
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| 157 | simple_tolerance = 1.000000e-03
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| 158 | coordinate_tolerance = 1.000000e-07
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| 159 | have_fixed_values = 0
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| 160 | max_update_steps = 100
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| 161 | max_update_disp = 0.500000
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| 162 | have_fixed_values = 0
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| 163 |
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| 164 | Molecular formula: H2Si
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| 165 | molecule<Molecule>: (
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| 166 | symmetry = c2v
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| 167 | unit = "angstrom"
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| 168 | { n atoms geometry }={
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| 169 | 1 Si [ 0.0000000000 0.0000000000 0.0200000000]
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| 170 | 2 H [ 0.0000000000 -1.1000000000 -1.0100000000]
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| 171 | 3 H [ 0.0000000000 1.1000000000 -1.0100000000]
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| 172 | }
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| 173 | )
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| 174 | Atomic Masses:
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| 175 | 27.97693 1.00783 1.00783
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| 176 |
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| 177 | Bonds:
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| 178 | STRE s1 1.50695 1 2 Si-H
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| 179 | STRE s2 1.50695 1 3 Si-H
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| 180 | Bends:
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| 181 | BEND b1 93.76456 2 1 3 H-Si-H
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| 182 |
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| 183 | SymmMolecularCoor Parameters:
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| 184 | change_coordinates = no
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| 185 | transform_hessian = yes
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| 186 | max_kappa2 = 10.000000
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| 187 |
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| 188 | GaussianBasisSet:
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| 189 | nbasis = 62
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| 190 | nshell = 24
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| 191 | nprim = 65
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| 192 | name = "pc-2"
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| 193 | Natural Population Analysis:
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| 194 | n atom charge ne(S) ne(P) ne(D) ne(F)
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| 195 | 1 Si 0.675958 5.662780 7.645106 0.015826 0.000330
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| 196 | 2 H -0.337979 1.327282 0.010557 0.000140
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| 197 | 3 H -0.337979 1.327282 0.010557 0.000140
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| 198 |
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| 199 | SCF Parameters:
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| 200 | maxiter = 40
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| 201 | density_reset_frequency = 10
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| 202 | level_shift = 0.000000
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| 203 |
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| 204 | CLSCF Parameters:
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| 205 | charge = 0.0000000000
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| 206 | ndocc = 8
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| 207 | docc = [ 5 0 1 2 ]
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| 208 |
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| 209 | The following keywords in "basis2_sih2scfpc2c2v.in" were ignored:
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| 210 | mpqc:mole:guess_wavefunction:multiplicity
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| 211 | mpqc:mole:multiplicity
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| 212 |
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| 213 | CPU Wall
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| 214 | mpqc: 5.49 5.50
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| 215 | NAO: 0.06 0.06
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| 216 | calc: 5.39 5.38
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| 217 | compute gradient: 2.46 2.46
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| 218 | nuc rep: 0.00 0.00
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| 219 | one electron gradient: 0.07 0.07
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| 220 | overlap gradient: 0.02 0.03
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| 221 | two electron gradient: 2.37 2.37
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| 222 | contribution: 2.01 2.02
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| 223 | start thread: 2.01 2.02
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| 224 | stop thread: 0.00 0.00
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| 225 | setup: 0.35 0.35
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| 226 | vector: 2.93 2.92
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| 227 | density: 0.00 0.00
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| 228 | evals: 0.01 0.01
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| 229 | extrap: 0.03 0.01
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| 230 | fock: 2.74 2.74
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| 231 | accum: 0.00 0.00
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| 232 | ao_gmat: 2.62 2.60
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| 233 | start thread: 2.62 2.60
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| 234 | stop thread: 0.00 0.00
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| 235 | init pmax: 0.00 0.00
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| 236 | local data: 0.02 0.01
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| 237 | setup: 0.03 0.05
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| 238 | sum: 0.00 0.00
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| 239 | symm: 0.06 0.07
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| 240 | vector: 0.03 0.03
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| 241 | density: 0.00 0.00
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| 242 | evals: 0.00 0.00
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| 243 | extrap: 0.01 0.00
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| 244 | fock: 0.02 0.02
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| 245 | accum: 0.00 0.00
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| 246 | ao_gmat: 0.01 0.01
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| 247 | start thread: 0.01 0.01
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| 248 | stop thread: 0.00 0.00
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| 249 | init pmax: 0.00 0.00
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| 250 | local data: 0.00 0.00
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| 251 | setup: 0.00 0.00
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| 252 | sum: 0.00 0.00
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| 253 | symm: 0.01 0.01
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| 254 | input: 0.04 0.05
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| 255 |
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| 256 | End Time: Sun Jan 9 18:49:40 2005
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| 257 |
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