20. For the following chair flip, the equatorial position of the methyl group is favored over the axial by a factor of 4:1, respectively at 25 °C. Calculate the Gibbs free energy for the chair flip process shown below. Write your answer to one decimal. What percentage of the molecules have the methyl group in the equatorial position at any given time? Write your answer to one decimal. [R 1.987 x 10-3 kcal mol¹K-1] AG° kcal/mol % Equitorial %

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20. For the following chair flip, the equatorial position of the methyl group is favored over the axial by a
factor of 4:1, respectively at 25 °C. Calculate the Gibbs free energy for the chair flip process shown
below. Write your answer to one decimal. What percentage of the molecules have the methyl group in
the equatorial position at any given time? Write your answer to one decimal.
[R = 1.987 × 10-3 kcal mol¹K-1]
AG°
kcal/mol
% Equitorial
%
Transcribed Image Text:20. For the following chair flip, the equatorial position of the methyl group is favored over the axial by a factor of 4:1, respectively at 25 °C. Calculate the Gibbs free energy for the chair flip process shown below. Write your answer to one decimal. What percentage of the molecules have the methyl group in the equatorial position at any given time? Write your answer to one decimal. [R = 1.987 × 10-3 kcal mol¹K-1] AG° kcal/mol % Equitorial %
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