the resonance and the inductive mechanisms. a = acceptor d = donor n = no effect 1. 2. -CH=CH-NO₂ Inductive effect :0: -CH=CH-C-OCH 3 0: Inductive effect 3. --CH₂CH₂CH₂-N+ Inductive effect Resonance effect Resonance effect Resonance effect

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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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. -CH₂CH₂CH₂-N+
2.
3.
:0:
0:
:0:
:0:
-CCH₂CH₂CH₂CH₂OH
Inductive effect
Inductive effect
-N(CH3)2
Inductive effect
Resonance effect
Resonance effect
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. -CH₂CH₂CH₂-N+ 2. 3. :0: 0: :0: :0: -CCH₂CH₂CH₂CH₂OH Inductive effect Inductive effect -N(CH3)2 Inductive effect Resonance effect Resonance effect Resonance effect
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.
-CH=CH-NO₂ Inductive effect
:0:
||
-CH=CH-C-OCH 3
0:
3. —O–CH2CH2CH2N+
:0:
Inductive effect
Inductive effect
rences
Resonance effect
Resonance effect
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. -CH=CH-NO₂ Inductive effect :0: || -CH=CH-C-OCH 3 0: 3. —O–CH2CH2CH2N+ :0: Inductive effect Inductive effect rences Resonance effect Resonance effect Resonance effect
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