| 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: evaleev@tool.chemistry.gatech.edu
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| 7 | Start Time: Sat Jan 29 23:30:57 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/tool/evaleev/MPQC/SC.recent/x86-linux/share/mpqc/2.3.0-alpha/atominfo.kv.
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| 17 | Molecule: setting point group to d2h
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| 18 | Reading file /home/tool/evaleev/MPQC/SC.recent/x86-linux/share/mpqc/2.3.0-alpha/basis/aug-cc-pvdz.kv.
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| 19 |
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| 20 | CLSCF::init: total charge = 0
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| 21 |
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| 22 | Using symmetric orthogonalization.
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| 23 | n(basis): 8 2 2 2 0 3 3 3
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| 24 | Maximum orthogonalization residual = 2.19641
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| 25 | Minimum orthogonalization residual = 0.0986169
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| 26 | Using symmetric orthogonalization.
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| 27 | n(basis): 8 2 2 2 0 3 3 3
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| 28 | Maximum orthogonalization residual = 2.19641
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| 29 | Minimum orthogonalization residual = 0.0986169
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| 30 | Using guess wavefunction as starting vector
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| 31 | docc = [ 2 0 0 0 0 1 1 1]
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| 32 | socc = [ 0 0 0 0 0 0 0 0]
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| 33 |
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| 34 | docc = [ 2 0 0 0 0 1 1 1 ]
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| 35 | nbasis = 23
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| 36 |
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| 37 | Molecular formula Ne
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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 = mp2r12ap_abs+
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| 42 | restart_file = mp2r12ap_abs+.ckpt
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| 43 | restart = yes
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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 = no
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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 | SCF::compute: energy accuracy = 1.0000000e-08
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| 54 |
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| 55 | integral intermediate storage = 1974576 bytes
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| 56 | integral cache = 22021008 bytes
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| 57 | nuclear repulsion energy = 0.0000000000
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| 58 |
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| 59 | 48918 integrals
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| 60 | iter 1 energy = -122.5194031208 delta = 3.09458e-01
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| 61 | 48918 integrals
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| 62 | iter 2 energy = -119.8618719548 delta = 3.11960e-01
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| 63 | 48918 integrals
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| 64 | iter 3 energy = -127.3802007595 delta = 2.25369e-01
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| 65 | 48918 integrals
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| 66 | iter 4 energy = -128.2971001730 delta = 4.77179e-02
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| 67 | 48918 integrals
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| 68 | iter 5 energy = -128.4954076587 delta = 3.31321e-02
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| 69 | 48918 integrals
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| 70 | iter 6 energy = -128.4963436508 delta = 2.00885e-03
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| 71 | 48918 integrals
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| 72 | iter 7 energy = -128.4963497157 delta = 1.88865e-04
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| 73 | 48918 integrals
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| 74 | iter 8 energy = -128.4963497305 delta = 8.16488e-06
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| 75 | 48918 integrals
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| 76 | iter 9 energy = -128.4963497305 delta = 3.83300e-07
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| 77 | 48918 integrals
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| 78 | iter 10 energy = -128.4963497305 delta = 1.31280e-07
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| 79 |
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| 80 | HOMO is 1 B2u = -0.853040
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| 81 | LUMO is 3 Ag = 0.287355
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| 82 |
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| 83 | total scf energy = -128.4963497305
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| 84 |
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| 85 | Orthogonalizing basis for space RI-BS:
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| 86 | WARNING: 6 basis functions ignored in symmetric orthogonalization.
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| 87 | Using symmetric orthogonalization.
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| 88 | n(basis): 76 20 20 20 15 57 57 57
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| 89 | Maximum orthogonalization residual = 9.64519
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| 90 | Minimum orthogonalization residual = 3.03235e-07
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| 91 |
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| 92 | Entered OBS A (GEBC) intermediates evaluator
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| 93 | Entered (ip|jq) integrals evaluator (transform type ikjy)
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| 94 | Memory available per node: 10000000 Bytes
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| 95 | Static memory used per node: 2122080 Bytes
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| 96 | Total memory used per node: 2440768 Bytes
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| 97 | Memory required for one pass: 2440768 Bytes
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| 98 | Minimum memory required: 2205616 Bytes
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| 99 | Number of passes: 1
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| 100 | Batch size: 4
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| 101 | Beginning pass 1
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| 102 | Begin loop over shells (ints, 1+2+3 q.t.)
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| 103 | working on shell pair ( 0 0), 0.000% complete (0 of 36)
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| 104 | working on shell pair ( 2 1), 11.111% complete (4 of 36)
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| 105 | working on shell pair ( 3 2), 22.222% complete (8 of 36)
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| 106 | working on shell pair ( 4 2), 33.333% complete (12 of 36)
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| 107 | working on shell pair ( 5 1), 44.444% complete (16 of 36)
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| 108 | working on shell pair ( 5 5), 55.556% complete (20 of 36)
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| 109 | working on shell pair ( 6 3), 66.667% complete (24 of 36)
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| 110 | working on shell pair ( 7 0), 77.778% complete (28 of 36)
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| 111 | working on shell pair ( 7 4), 88.889% complete (32 of 36)
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| 112 | End of loop over shells
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| 113 | Begin fourth q.t.
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| 114 | End of fourth q.t.
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| 115 | Exited (ip|jq) integrals evaluator (transform type ikjy)
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| 116 | Begin computation of intermediates
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| 117 | Computing intermediates on 1 processors
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| 118 | End of computation of intermediates
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| 119 | Exited OBS A (GEBC) intermediates evaluator
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| 120 |
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| 121 | Entered ABS A (GEBC) intermediates evaluator
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| 122 | Entered (ik|jy) integrals evaluator (transform type ikjy)
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| 123 | Memory available per node: 10000000 Bytes
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| 124 | Static memory used per node: 3804960 Bytes
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| 125 | Total memory used per node: 4767880 Bytes
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| 126 | Memory required for one pass: 4767880 Bytes
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| 127 | Minimum memory required: 4055560 Bytes
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| 128 | Number of passes: 1
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| 129 | Batch size: 4
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| 130 | Beginning pass 1
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| 131 | Begin loop over shells (ints, 1+2+3 q.t.)
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| 132 | working on shell pair ( 0 0), 0.000% complete (0 of 776)
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| 133 | working on shell pair ( 9 6), 10.052% complete (78 of 776)
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| 134 | working on shell pair ( 19 4), 20.103% complete (156 of 776)
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| 135 | working on shell pair ( 29 2), 30.155% complete (234 of 776)
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| 136 | working on shell pair ( 39 0), 40.206% complete (312 of 776)
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| 137 | working on shell pair ( 48 6), 50.258% complete (390 of 776)
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| 138 | working on shell pair ( 58 4), 60.309% complete (468 of 776)
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| 139 | working on shell pair ( 68 2), 70.361% complete (546 of 776)
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| 140 | working on shell pair ( 78 0), 80.412% complete (624 of 776)
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| 141 | working on shell pair ( 87 6), 90.464% complete (702 of 776)
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| 142 | End of loop over shells
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| 143 | Begin fourth q.t.
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| 144 | End of fourth q.t.
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| 145 | Exited (ik|jy) integrals evaluator (transform type ikjy)
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| 146 | Begin computation of intermediates
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| 147 | Computing intermediates on 1 processors
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| 148 | End of computation of intermediates
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| 149 | Exited ABS A (GEBC) intermediates evaluator
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| 150 |
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| 151 | Singlet MBPT2-R12/A pair energies:
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| 152 | i j mp2(ij) r12(ij) mp2-r12(ij)
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| 153 | ----- ----- ------------ ------------ ------------
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| 154 | 1 1 -0.007607618 -0.003900022 -0.011507641
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| 155 | 2 1 -0.008531603 -0.008153613 -0.016685216
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| 156 | 2 2 -0.018168074 -0.007469586 -0.025637660
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| 157 | 3 1 -0.008531603 -0.008153613 -0.016685216
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| 158 | 3 2 -0.011353110 -0.004424332 -0.015777442
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| 159 | 3 3 -0.018168074 -0.007469586 -0.025637660
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| 160 | 4 1 -0.008531603 -0.008153613 -0.016685216
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| 161 | 4 2 -0.011353110 -0.004424332 -0.015777442
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| 162 | 4 3 -0.011353110 -0.004424332 -0.015777442
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| 163 | 4 4 -0.018168074 -0.007469586 -0.025637660
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| 164 |
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| 165 | Triplet MBPT2-R12/A pair energies:
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| 166 | i j mp2(ij) r12(ij) mp2-r12(ij)
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| 167 | ----- ----- ------------ ------------ ------------
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| 168 | 2 1 -0.005219294 -0.001815399 -0.007034692
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| 169 | 3 1 -0.005219294 -0.001815399 -0.007034692
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| 170 | 3 2 -0.023149882 -0.004974499 -0.028124381
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| 171 | 4 1 -0.005219294 -0.001815399 -0.007034692
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| 172 | 4 2 -0.023149882 -0.004974499 -0.028124381
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| 173 | 4 3 -0.023149882 -0.004974499 -0.028124381
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| 174 |
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| 175 | Singlet MP2 correlation energy [au]: -0.121765980140
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| 176 | Triplet MP2 correlation energy [au]: -0.085107528406
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| 177 | Singlet (MP2)-R12/ A correlation energy [au]: -0.064042614754
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| 178 | Triplet (MP2)-R12/ A correlation energy [au]: -0.020369692962
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| 179 | Singlet MP2-R12/ A correlation energy [au]: -0.185808594894
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| 180 | Triplet MP2-R12/ A correlation energy [au]: -0.105477221368
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| 181 |
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| 182 | RHF energy [au]: -128.496349730541
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| 183 | MP2 correlation energy [au]: -0.206873508546
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| 184 | (MBPT2)-R12/ A correlation energy [au]: -0.084412307717
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| 185 | MBPT2-R12/ A correlation energy [au]: -0.291285816263
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| 186 | MBPT2-R12/ A energy [au]: -128.787635546803
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| 187 |
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| 188 |
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| 189 | Singlet MBPT2-R12/A' pair energies:
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| 190 | i j mp2(ij) r12(ij) mp2-r12(ij)
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| 191 | ----- ----- ------------ ------------ ------------
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| 192 | 1 1 -0.007607618 -0.003752956 -0.011360574
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| 193 | 2 1 -0.008531603 -0.008153613 -0.016685216
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| 194 | 2 2 -0.018168074 -0.007685806 -0.025853880
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| 195 | 3 1 -0.008531603 -0.008153613 -0.016685216
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| 196 | 3 2 -0.011353110 -0.004424332 -0.015777442
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| 197 | 3 3 -0.018168074 -0.007685806 -0.025853880
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| 198 | 4 1 -0.008531603 -0.008153613 -0.016685216
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| 199 | 4 2 -0.011353110 -0.004424332 -0.015777442
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| 200 | 4 3 -0.011353110 -0.004424332 -0.015777442
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| 201 | 4 4 -0.018168074 -0.007685806 -0.025853880
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| 202 |
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| 203 | Triplet MBPT2-R12/A' pair energies:
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| 204 | i j mp2(ij) r12(ij) mp2-r12(ij)
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| 205 | ----- ----- ------------ ------------ ------------
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| 206 | 2 1 -0.005219294 -0.001815399 -0.007034692
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| 207 | 3 1 -0.005219294 -0.001815399 -0.007034692
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| 208 | 3 2 -0.023149882 -0.004974499 -0.028124381
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| 209 | 4 1 -0.005219294 -0.001815399 -0.007034692
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| 210 | 4 2 -0.023149882 -0.004974499 -0.028124381
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| 211 | 4 3 -0.023149882 -0.004974499 -0.028124381
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| 212 |
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| 213 | Singlet MP2 correlation energy [au]: -0.121765980140
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| 214 | Triplet MP2 correlation energy [au]: -0.085107528406
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| 215 | Singlet (MP2)-R12/A' correlation energy [au]: -0.064544210162
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| 216 | Triplet (MP2)-R12/A' correlation energy [au]: -0.020369692962
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| 217 | Singlet MP2-R12/A' correlation energy [au]: -0.186310190302
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| 218 | Triplet MP2-R12/A' correlation energy [au]: -0.105477221368
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| 219 |
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| 220 | RHF energy [au]: -128.496349730541
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| 221 | MP2 correlation energy [au]: -0.206873508546
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| 222 | (MBPT2)-R12/A' correlation energy [au]: -0.084913903125
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| 223 | MBPT2-R12/A' correlation energy [au]: -0.291787411671
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| 224 | MBPT2-R12/A' energy [au]: -128.788137142211
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| 225 |
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| 226 |
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| 227 | Value of the MolecularEnergy: -128.7881371422
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| 228 |
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| 229 | MBPT2_R12:
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| 230 | GBC assumed: true
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| 231 | EBC assumed: true
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| 232 | ABS method variant: ABS+ (Klopper and Samson using the union of OBS and ABS for RI)
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| 233 | Standard Approximation: A'
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| 234 | Spin-adapted algorithm: true
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| 235 | How to Store Transformed Integrals: posix
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| 236 |
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| 237 | Transformed Integrals file: mp2r12ap_abs+.r12ints.dat
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| 238 |
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| 239 | Auxiliary Basis Set (ABS):
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| 240 | GaussianBasisSet:
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| 241 | nbasis = 299
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| 242 | nshell = 89
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| 243 | nprim = 89
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| 244 | name = "K32s15f"
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| 245 |
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| 246 | Virtuals Basis Set (VBS):
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| 247 | GaussianBasisSet:
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| 248 | nbasis = 23
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| 249 | nshell = 8
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| 250 | nprim = 17
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| 251 | name = "aug-cc-pVDZ"
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| 252 |
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| 253 | MBPT2:
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| 254 | Function Parameters:
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| 255 | value_accuracy = 4.203562e-08 (1.000000e-06) (computed)
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| 256 | gradient_accuracy = 0.000000e+00 (1.000000e-06)
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| 257 | hessian_accuracy = 0.000000e+00 (1.000000e-04)
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| 258 |
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| 259 | Molecule:
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| 260 | Molecular formula: Ne
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| 261 | molecule<Molecule>: (
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| 262 | symmetry = d2h
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| 263 | unit = "angstrom"
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| 264 | { n atoms geometry }={
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| 265 | 1 Ne [ 0.0000000000 0.0000000000 0.0000000000]
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| 266 | }
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| 267 | )
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| 268 | Atomic Masses:
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| 269 | 19.99244
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| 270 |
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| 271 | GaussianBasisSet:
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| 272 | nbasis = 23
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| 273 | nshell = 8
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| 274 | nprim = 17
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| 275 | name = "aug-cc-pVDZ"
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| 276 | Reference Wavefunction:
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| 277 | Function Parameters:
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| 278 | value_accuracy = 4.203562e-10 (1.000000e-08) (computed)
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| 279 | gradient_accuracy = 0.000000e+00 (1.000000e-06)
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| 280 | hessian_accuracy = 0.000000e+00 (1.000000e-04)
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| 281 |
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| 282 | Molecule:
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| 283 | Molecular formula: Ne
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| 284 | molecule<Molecule>: (
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| 285 | symmetry = d2h
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| 286 | unit = "angstrom"
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| 287 | { n atoms geometry }={
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| 288 | 1 Ne [ 0.0000000000 0.0000000000 0.0000000000]
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| 289 | }
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| 290 | )
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| 291 | Atomic Masses:
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| 292 | 19.99244
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| 293 |
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| 294 | GaussianBasisSet:
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| 295 | nbasis = 23
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| 296 | nshell = 8
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| 297 | nprim = 17
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| 298 | name = "aug-cc-pVDZ"
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| 299 | SCF Parameters:
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| 300 | maxiter = 40
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| 301 | density_reset_frequency = 10
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| 302 | level_shift = 0.000000
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| 303 |
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| 304 | CLSCF Parameters:
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| 305 | charge = 0
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| 306 | ndocc = 5
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| 307 | docc = [ 2 0 0 0 0 1 1 1 ]
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| 308 |
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| 309 |
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| 310 | The following keywords in "mp2r12ap_abs+.in" were ignored:
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| 311 | mpqc:mole:gebc
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| 312 |
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| 313 | CPU Wall
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| 314 | mpqc: 7.62 7.61
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| 315 | calc: 7.53 7.52
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| 316 | mp2-r12/a energy: 7.53 7.52
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| 317 | mp2-r12/a pair energies: 0.00 0.00
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| 318 | mp2-r12/a' pair energies: 0.01 0.01
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| 319 | mp2-r12a intermeds: 5.20 5.20
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| 320 | intermediates: 0.03 0.03
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| 321 | MO ints contraction: 0.01 0.02
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| 322 | MO ints retrieve: 0.01 0.00
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| 323 | tbint_tform_ikjy (ik|jy): 4.84 4.83
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| 324 | mp2-r12/a passes: 4.69 4.69
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| 325 | 4. q.t.: 0.09 0.09
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| 326 | MO ints store: 0.00 0.00
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| 327 | ints+1qt+2qt+3qt: 4.60 4.60
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| 328 | tbint_tform_ikjy (ip|jq): 0.33 0.33
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| 329 | mp2-r12/a passes: 0.33 0.33
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| 330 | 4. q.t.: 0.00 0.00
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| 331 | MO ints store: 0.00 0.00
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| 332 | ints+1qt+2qt+3qt: 0.33 0.33
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| 333 | vector: 1.04 1.04
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| 334 | density: 0.01 0.01
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| 335 | evals: 0.01 0.01
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| 336 | extrap: 0.02 0.02
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| 337 | fock: 0.99 0.99
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| 338 | accum: 0.00 0.00
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| 339 | ao_gmat: 0.83 0.84
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| 340 | start thread: 0.83 0.83
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| 341 | stop thread: 0.00 0.00
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| 342 | init pmax: 0.00 0.00
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| 343 | local data: 0.00 0.00
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| 344 | setup: 0.07 0.07
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| 345 | sum: 0.00 0.00
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| 346 | symm: 0.07 0.07
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| 347 | input: 0.09 0.09
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| 348 |
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| 349 | End Time: Sat Jan 29 23:31:05 2005
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| 350 |
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