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Basics of VB theory and XMVB program
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− | + | =='''The lone pairs of H<sub>2</sub>O'''== | |
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+ | !<big><big><big>'''Computer exercises'''</big></big></big> | ||
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== Exercise 2 : Starting up with the H<math>{}_2</math> molecule == | == Exercise 2 : Starting up with the H<math>{}_2</math> molecule == | ||
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Then these input files could serve you as templates for the next exercises. | Then these input files could serve you as templates for the next exercises. | ||
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== Exercise 3 : HF molecule : weights and bond energy == | == Exercise 3 : HF molecule : weights and bond energy == | ||
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# Starting from guess orbitals obtained at equilibrium geometry, redo the D-BOVB calculation for the large inter fragment distance. How does the weights of the different structures evolve when the molecule is stretched ? | # Starting from guess orbitals obtained at equilibrium geometry, redo the D-BOVB calculation for the large inter fragment distance. How does the weights of the different structures evolve when the molecule is stretched ? | ||
# Redo the D-BOVB calculations at equilibrium geometry and large distance using VBPCM for water. How does the weights change with solvation effects ? | # Redo the D-BOVB calculations at equilibrium geometry and large distance using VBPCM for water. How does the weights change with solvation effects ? | ||
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+ | [[General_guidelines_for_BOVB_calculations| >> general guidelines for BOVB calculations]] |
Version du 28 juin 2012 à 22:47
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Computer exercises |
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Exercise 2 : Starting up with the H<math>{}_2</math> moleculeTwo Gamess and XMVB input files for the H<math>{}_2</math> molecule are provided in the Exercise folder on the tutorial machines :
There are VBSCF calculations with the 6-31G(d,p) basis set. Just inspect these inputs, run the gamess-xmvb program (using : vbrun h2-atom and : vbrun h2-sao, and analyze the outputs. Then these input files could serve you as templates for the next exercises. Exercise 3 : HF molecule : weights and bond energy
Exercise 4 : F<math>{}_2</math> molecule and charge-shift resonance energy
Exercice 5 : Solvent effect on C(Me)<math>{}_3</math>-Cl weights
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