Classify the following substituents according to whether they are electron donors or electron acceptors relative to hydrogen by the resonance and the inductive mecha a = acceptor d = donor n = no effect 1. 2. 3. Inductive effect a CH3 :0: DO CHỊCH, CHỊ CHÍCH -CH=CH-C=N Inductive effect Inductive effect Resonance effect a . Resonance effect Resonance effect

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Chapter1: Chemical Foundations
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Classify the following substituents according to whether they are electron donors or electron acceptors relative to hydrogen by the resonance and the inductive mechanisms.
a = acceptor
d = donor
n = no effect
1.
2.
:0:
CH3
Inductive effect a
-CCH₂CH₂CH₂CH₂OH
3. -CH=CH-C=N:
Inductive effect
Inductive effect
Resonance effect a
Resonance effect
[References]
Resonance effect
Transcribed Image Text:Classify the following substituents according to whether they are electron donors or electron acceptors relative to hydrogen by the resonance and the inductive mechanisms. a = acceptor d = donor n = no effect 1. 2. :0: CH3 Inductive effect a -CCH₂CH₂CH₂CH₂OH 3. -CH=CH-C=N: Inductive effect Inductive effect Resonance effect a Resonance effect [References] Resonance effect
Draw a resonance structure, complete with all formal charges and lone (unshared) electron pairs, that shows the resonance interaction of the oxide with the para position in phenoxide ion.
O
phenoxide ion
You do not have to consider stereochemistry.
• Include all valence lone pairs in your answer.
• In cases where there is more than one answer, just draw one.
Sn [F
Transcribed Image Text:Draw a resonance structure, complete with all formal charges and lone (unshared) electron pairs, that shows the resonance interaction of the oxide with the para position in phenoxide ion. O phenoxide ion You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. Sn [F
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