2. A benzene ring alters the reactivity of a neighboring group in the so-called "benzylic" position, similarly to how a double bond alters the reactivity of groups in the “allylic" position. R allylic position benzylic position Benzylic cations, anions, and radicals are all more stable than simple alkyl intermediates. a) Use resonance structures to show the delocalization of the positive charge, negative charge, and unpaired electron of the benzyl cation, anion, and radical.

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2. A benzene ring alters the reactivity of a neighboring group in the so-called "benzylic" position,
similarly to how a double bond alters the reactivity of groups in the "allylic" position.
R
.R
allylic position
benzylic position
Benzylic cations, anions, and radicals are all more stable than simple alkyl intermediates.
a) Use resonance structures to show the delocalization of the positive charge, negative charge,
and unpaired electron of the benzyl cation, anion, and radical.
Transcribed Image Text:2. A benzene ring alters the reactivity of a neighboring group in the so-called "benzylic" position, similarly to how a double bond alters the reactivity of groups in the "allylic" position. R .R allylic position benzylic position Benzylic cations, anions, and radicals are all more stable than simple alkyl intermediates. a) Use resonance structures to show the delocalization of the positive charge, negative charge, and unpaired electron of the benzyl cation, anion, and radical.
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The resonance structures to show the delocalization of the positive charge and negative charge and unpaired electron of the benzyl cation, anion and radical is:

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