Explain why (CH3)₂CHCH(Br)CH₂CH3 an E2 reaction, even though both alkyl halides are 2. reacts faster than (CH3)₂CHCH₂CH(Br)CH₂ in A. The major and minor products formed from the second structure have more alkyl groups on the C=C than those formed from the first structure. B. The second structure has more hydrogens attached to the ß carbons than the first structure. C. The first structure has more hydrogens attached to the ß carbons than the second structure. D. The major and minor products formed from the first structure have more alkyl groups on the C=C than those formed from the second structure.

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Explain why (CH3)₂CHCH(Br)CH₂CH3
an E2 reaction, even though both alkyl halides are 2.
reacts faster than (CH3)₂CHCH₂CH(Br)CH₂ in
A. The major and minor products formed from the second structure have more alkyl
groups on the C=C than those formed from the first structure.
B. The second structure has more hydrogens attached to the ẞ carbons than the first
structure.
C. The first structure has more hydrogens attached to the ß carbons than the second
structure.
D. The major and minor products formed from the first structure have more alkyl
groups on the C=C than those formed from the second structure.
Transcribed Image Text:Explain why (CH3)₂CHCH(Br)CH₂CH3 an E2 reaction, even though both alkyl halides are 2. reacts faster than (CH3)₂CHCH₂CH(Br)CH₂ in A. The major and minor products formed from the second structure have more alkyl groups on the C=C than those formed from the first structure. B. The second structure has more hydrogens attached to the ẞ carbons than the first structure. C. The first structure has more hydrogens attached to the ß carbons than the second structure. D. The major and minor products formed from the first structure have more alkyl groups on the C=C than those formed from the second structure.
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