83. Which of the following statement(s) concerning valence-bond theory and molecular orbital theory is(are) true? The orientations of atomic orbitals do not have to be manipulated in order to obtain the correct geometric shape in molecular orbital theory. Valence bond theory describes a covalent bond as a result of the overlap of atomic orbitals, whereas molecular orbital theory describes a bond as a region of space in a molecule where

Chemistry for Engineering Students
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Chapter7: Chemical Bonding And Molecular Structure
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Choose the correct statement on the topic of valence-bond theory and molecular orbital theory. 

83. Which of the following statement(s) concerning valence-bond theory and molecular
orbital theory is(are) true?
The orientations of atomic orbitals do not have to be manipulated in order to obtain the
correct geometric shape in molecular orbital theory.
Valence bond theory describes a covalent bond as a result of the overlap of atomic
orbitals,
whereas molecular orbital theory describes a bond as a region of space in a molecule
where
there is a high probability of finding the bonding electrons.
The molecular orbital bond does not have to be created from atomic orbitals (though it
often
is).
There is little concept of the relative energies of bonding in valence-bond theory; in
molecular
orbital theory bonds are ordered energetically
All of these are true statements.
Transcribed Image Text:83. Which of the following statement(s) concerning valence-bond theory and molecular orbital theory is(are) true? The orientations of atomic orbitals do not have to be manipulated in order to obtain the correct geometric shape in molecular orbital theory. Valence bond theory describes a covalent bond as a result of the overlap of atomic orbitals, whereas molecular orbital theory describes a bond as a region of space in a molecule where there is a high probability of finding the bonding electrons. The molecular orbital bond does not have to be created from atomic orbitals (though it often is). There is little concept of the relative energies of bonding in valence-bond theory; in molecular orbital theory bonds are ordered energetically All of these are true statements.
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