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In all the following exercises, '''<font color=red><math>\pi</math> the system will be taken as active</font>''', 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. | In all the following exercises, '''<font color=red><math>\pi</math> the system will be taken as active</font>''', 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. | ||
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== Exercise 1 : The allyl radical == | == Exercise 1 : The allyl radical == | ||
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Version du 12 juillet 2012 à 09:16
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.
Main exercises | ||
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Exercise 1 : The allyl radicalPaper Exercise
Computer Exercise
Exercise 2 : Radical character of ozoneComputer Exercises
\psi_{H\ddot{u}ckel} = 25%\Phi_1 + 25%\Phi_2 + 12.5%\Phi_3 + 25%\Phi_4 + 6.25%\Phi_5 + 6.25%\Phi_6 </math> Paper Exercises - Optional/Homework
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Optional Exercises | ||
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Exercise 3 : Resonance energy of BenzeneComputer Exercise
Exercise 4 : The allyl cation
Computer Exercise
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