References In radical chlorination of alkanes, non-equivalent hydrogens react with chlorine atoms at different rates. At 35 °C, primary, secondary, and tertiary C-H bonds react at relative rates of 1:3.9: 5.2 respectively. These are conditions of kinetic control where product ratios are determined by relative rates of formation. For example, if A is formed twice as fast as B, the A:B product ratio will be 2. Consider chlorination of the alkane below at 35 °C. b 1. Specify the most reactive C-H bond(s), a-c. Two non-equivalent C-H bonds of comparable reactivity should be separated by commas, i.e. a,c. 2. Specify the site of chlorination in the major monochloro substitution product, a-c. Two products that form in comparable quantities should be separated by commas, i.e. a,c Submit Answer Retry Entire Group 9 more group attempts remaining
References In radical chlorination of alkanes, non-equivalent hydrogens react with chlorine atoms at different rates. At 35 °C, primary, secondary, and tertiary C-H bonds react at relative rates of 1:3.9: 5.2 respectively. These are conditions of kinetic control where product ratios are determined by relative rates of formation. For example, if A is formed twice as fast as B, the A:B product ratio will be 2. Consider chlorination of the alkane below at 35 °C. b 1. Specify the most reactive C-H bond(s), a-c. Two non-equivalent C-H bonds of comparable reactivity should be separated by commas, i.e. a,c. 2. Specify the site of chlorination in the major monochloro substitution product, a-c. Two products that form in comparable quantities should be separated by commas, i.e. a,c Submit Answer Retry Entire Group 9 more group attempts remaining
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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In radical chlorination of alkanes, non-equivalent hydrogens react with chlorine atoms at different rates. At 35 °C, primary,
secondary, and tertiary C-H bonds react at relative rates of 1:3.9: 5.2 respectively.
These are conditions of kinetic control where product ratios are determined by relative rates of formation. For example, if A is
formed twice as fast as B, the A:B product ratio will be 2.
Consider chlorination of the alkane below at 35 °C.
b
1. Specify the most reactive C-H bond(s), a-c.
Two non-equivalent C-H bonds of comparable reactivity should be separated by commas, i.e. a,c.
2. Specify the site of chlorination in the major monochloro substitution product, a-c.
Two products that form in comparable quantities should be separated by commas, i.e. a,c
Submit Answer
Retry Entire Group
9 more group attempts remaining](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9a595ed4-cb3f-4d6b-94ea-6a40605584f5%2F410ba482-f1fc-4c85-b76d-0054d7f5f5f6%2Ffvas1bi_processed.jpeg&w=3840&q=75)
Transcribed Image Text:References
In radical chlorination of alkanes, non-equivalent hydrogens react with chlorine atoms at different rates. At 35 °C, primary,
secondary, and tertiary C-H bonds react at relative rates of 1:3.9: 5.2 respectively.
These are conditions of kinetic control where product ratios are determined by relative rates of formation. For example, if A is
formed twice as fast as B, the A:B product ratio will be 2.
Consider chlorination of the alkane below at 35 °C.
b
1. Specify the most reactive C-H bond(s), a-c.
Two non-equivalent C-H bonds of comparable reactivity should be separated by commas, i.e. a,c.
2. Specify the site of chlorination in the major monochloro substitution product, a-c.
Two products that form in comparable quantities should be separated by commas, i.e. a,c
Submit Answer
Retry Entire Group
9 more group attempts remaining
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