Part 5a. Rotamers. Answers the following questions about the C-C bond indicated below 3-methylhexane H/H eclipsed CH3/H eclipsed CH3CH₂/H eclipsed CH3/CH3 eclipsed CH3/CH₂CH3 eclipsed CH₂CH3/CH₂CH3 eclipsed CH3/CH3 gauche CH3CH₂CH3 gauche CH₂CH3/CH₂CH3 gauche 1.0 kcal/mol 1.5 kcal/mol 1.6 kcal/mol 2.5 kcal/mol 3.0 kcal/mol 5.1 kcal/mol 0.9 kcal/mol unknown 1.6 kcal/mol (a) Draw the most stable rotamer, using a newman projection, for the C3-C4 bond of 3- methylhexane. (b) Draw the least stable rotamer, using a newman projection, for the C3-C4 bond of 3-methyl hexane. (c) The barrier to rotation for the C3-C4 bond of 3-methylhexane is 6.3 kcal/mol. Given this information, and the information provided above, what is the energy cost for a CH3CH₂C gauche interaction? (show your work)

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
Chapter14: Elimination
Section: Chapter Questions
Problem 30E
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Part 5a. Rotamers. Answers the following questions about the C-C bond indicated below
3
4
3-methylhexane
H/H eclipsed
CH3/H eclipsed
CH3CH₂/H eclipsed
CH3/CH3 eclipsed
CH3/CH₂CH3 eclipsed
CH₂CH3/CH₂CH3 eclipsed
CH3/CH3 gauche
CH3CH₂CH3 gauche
CH₂CH3/CH₂CH3 gauche
1.0 kcal/mol
1.5 kcal/mol
1.6 kcal/mol
2.5 kcal/mol
3.0 kcal/mol
5.1 kcal/mol
0.9 kcal/mol
unknown
1.6 kcal/mol
(a) Draw the most stable rotamer, using a newman projection, for the C3-C4 bond of 3-
methylhexane.
(b) Draw the least stable rotamer, using a newman projection, for the C3-C4 bond of 3-methyl
hexane.
(c) The barrier to rotation for the C3-C4 bond of 3-methylhexane is 6.3 kcal/mol. Given this
information, and the information provided above, what is the energy cost for a CH3 / CH₂CH3
gauche interaction? (show your work)
Transcribed Image Text:Part 5a. Rotamers. Answers the following questions about the C-C bond indicated below 3 4 3-methylhexane H/H eclipsed CH3/H eclipsed CH3CH₂/H eclipsed CH3/CH3 eclipsed CH3/CH₂CH3 eclipsed CH₂CH3/CH₂CH3 eclipsed CH3/CH3 gauche CH3CH₂CH3 gauche CH₂CH3/CH₂CH3 gauche 1.0 kcal/mol 1.5 kcal/mol 1.6 kcal/mol 2.5 kcal/mol 3.0 kcal/mol 5.1 kcal/mol 0.9 kcal/mol unknown 1.6 kcal/mol (a) Draw the most stable rotamer, using a newman projection, for the C3-C4 bond of 3- methylhexane. (b) Draw the least stable rotamer, using a newman projection, for the C3-C4 bond of 3-methyl hexane. (c) The barrier to rotation for the C3-C4 bond of 3-methylhexane is 6.3 kcal/mol. Given this information, and the information provided above, what is the energy cost for a CH3 / CH₂CH3 gauche interaction? (show your work)
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