e) none of the above 19. Given the bond dissociation energies below (in kcal/mol), calculate the following reaction: Work out (CH3)3C-H (CH3)3C-Br Br-Br H-Br CH3-Br Br (CH3)3C + Br₂ End of Part 1 (CH3)3CH + Br₂ 91 65 46 88 70 21+46 = 137 65+87=153 repetate Write chain propagation steps for the above bromination reaction. (CH3)3CH + (CH3)3C + BDE - BRG (CH3)3CBr + HBr + Br (CH3)3CBr + 137-153 BREA products

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Chapter1: Chemical Foundations
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e) none of the above
19. Given the bond dissociation energies below (in kcal/mol), calculate the overall AH° for the
following reaction:
65
88
(CH3)3CBr +
HBr
Work out
(CH3)3C-H
(CH3)3C-Br
Br-Br
H-Br
CH3-Br
Br
(CH3)3C + Br₂
End of Part 1
(CH3)3CH + Br2
91
65
46
88
70
Write chain propagation steps for the above bromination reaction.
(CH3)3CH +
(CH3)3C +
21+46 =137
65+87-153
BDE
repetat
(CH3)3CBr +
HBr
137 153 =
впее джо
products.
Br
-16 kcallmal
Transcribed Image Text:e) none of the above 19. Given the bond dissociation energies below (in kcal/mol), calculate the overall AH° for the following reaction: 65 88 (CH3)3CBr + HBr Work out (CH3)3C-H (CH3)3C-Br Br-Br H-Br CH3-Br Br (CH3)3C + Br₂ End of Part 1 (CH3)3CH + Br2 91 65 46 88 70 Write chain propagation steps for the above bromination reaction. (CH3)3CH + (CH3)3C + 21+46 =137 65+87-153 BDE repetat (CH3)3CBr + HBr 137 153 = впее джо products. Br -16 kcallmal
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