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# The complete number of the ionic structures is too large to be written by hand. So using the keyword "str=full" produces all covalent and ionic structures. For benzene this involves overall of 175 structures.  
 
# The complete number of the ionic structures is too large to be written by hand. So using the keyword "str=full" produces all covalent and ionic structures. For benzene this involves overall of 175 structures.  
 
# In order to calculate the Kékulé diabatic state one has to calculate the Kékulé covalent structure along with all the related ionic structures (overall of 27 structures in this case). The keyword "str=full" cannot be used in this case, thus, in order to avoid tedious work we utilize the bond distorted orbitals '''bdo''' while calculating only the covalent structure. <br> The following Table summarizes the energies for the diabatic Kékulé state as well as the adiabatic state of benzene:
 
# In order to calculate the Kékulé diabatic state one has to calculate the Kékulé covalent structure along with all the related ionic structures (overall of 27 structures in this case). The keyword "str=full" cannot be used in this case, thus, in order to avoid tedious work we utilize the bond distorted orbitals '''bdo''' while calculating only the covalent structure. <br> The following Table summarizes the energies for the diabatic Kékulé state as well as the adiabatic state of benzene:
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Version du 12 juillet 2012 à 10:06

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VB applications on PI systems

In all the following exercises, <math>\pi</math> the system will be taken as active, and the <math>\sigma</math> system as inactive. In all VB calculations, the <math>\sigma</math> orbitals shall be described by MOs delocalized onto the whole molecule.




>> general guidelines for BOVB calculations