Recognising how resonan charge around a ring helps to understand the reactivity of a substituted benzene. Consider the resonance contributors of ethoxybenzene :0 According to resonance, is the ring: activated or deactivated to electrophilic substitution. And which site/s are the most susceptible to substitution? O a. deactivated - meta postions are most active O b. Deactivated - ortho and para positions are most active O c. Activated - ortho and para positions are most active O d. Activated - meta positions are most active

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Recognising how resonance contribtutes to the arrangement of
charge around a ring helps to understand the reactivity of a
substituted benzene.
Consider the resonance contributors of ethoxybenzene
8-1 8-5-5
e
According to resonance, is the ring: activated or deactivated to
electrophilic substitution. And which site/s are the most susceptible
to substitution?
O a. deactivated - meta postions are most active
O b. Deactivated - ortho and para positions are most active
O c.
Activated - ortho and para positions are most active
O d. Activated - meta positions are most active
Transcribed Image Text:Recognising how resonance contribtutes to the arrangement of charge around a ring helps to understand the reactivity of a substituted benzene. Consider the resonance contributors of ethoxybenzene 8-1 8-5-5 e According to resonance, is the ring: activated or deactivated to electrophilic substitution. And which site/s are the most susceptible to substitution? O a. deactivated - meta postions are most active O b. Deactivated - ortho and para positions are most active O c. Activated - ortho and para positions are most active O d. Activated - meta positions are most active
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