Différences entre les versions de « VBTutorial1 »
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− | * It is strongly advisable to use the ''boys'' keyword at the VBSCF step, as it will provide more physically meaningful orbitals for the next | + | * It is strongly advisable to use the ''boys'' keyword at the VBSCF step, as it will provide more physically meaningful orbitals for the next BOVB calculations (the same remark would hold with VBCI) |
* To reperform D-BOVB at large interatomic distances (question n°2), you have to proceed in two steps : | * To reperform D-BOVB at large interatomic distances (question n°2), you have to proceed in two steps : | ||
** starting from the orbitals converged at equilibrium distances (question n°1.3) as a guess : reperform a L-BOVB first at large interatomic distances ; | ** starting from the orbitals converged at equilibrium distances (question n°1.3) as a guess : reperform a L-BOVB first at large interatomic distances ; |
Version du 30 juin 2012 à 00:06
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Basics of VB theory and XMVB program
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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