Use the References to access important values if needed for this question. a. Use strain energy increments in the OWL Table Reference (see References button, Strain Energy Increments) to calculate the energy difference between the two chair conformations of the compound below. b. Specify substituent positions (axial or equatorial) in the more stable chair. c. Estimate the percent of the more stable chair at equilibrium at 25°C. (To determine the percent of the more stable chair at equilibrium, first calculate K, and then use this value to find the percentage.) он (in isopropanol) Answers: a. The energy difference is b. In the more stable chair: • The hydroxyl group is in the kJ/mol. | position. |position. • The chloro group is in the | c. At 25°C the equilibrium percent of the more stable chair conformation is approximately

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
Chapter7: Cycloalkanes
Section: Chapter Questions
Problem 17E: Build a model of methylcyclohexane, and use the model to complete the following Newmanprojections of...
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[Review Topics]
[References)
Use the References to access important values if needed for this question.
a. Use strain energy increments in the OWL Table Reference (see References button, Strain Energy Increments) to calculate the energy difference
between the two chair conformations of the compound below.
b. Specify substituent positions (axial or equatorial) in the more stable chair.
c. Estimate the percent of the more stable chair at equilibrium at 25°C.
(To determine the percent of the more stable chair at equilibrium, first calculate K, and then use this value to find the percentage.)
он
(in isopropanol)
Answers:
kJ/mol.
a. The energy difference is
b. In the more stable chair:
• The hydroxyl group is in the |
• The chloro group is in the |
c. At 25°C the equilibrium percent of the more stable chair conformation is approximately |
position.
|position.
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Transcribed Image Text:[Review Topics] [References) Use the References to access important values if needed for this question. a. Use strain energy increments in the OWL Table Reference (see References button, Strain Energy Increments) to calculate the energy difference between the two chair conformations of the compound below. b. Specify substituent positions (axial or equatorial) in the more stable chair. c. Estimate the percent of the more stable chair at equilibrium at 25°C. (To determine the percent of the more stable chair at equilibrium, first calculate K, and then use this value to find the percentage.) он (in isopropanol) Answers: kJ/mol. a. The energy difference is b. In the more stable chair: • The hydroxyl group is in the | • The chloro group is in the | c. At 25°C the equilibrium percent of the more stable chair conformation is approximately | position. |position. An error has been detected in your answer. Check for typos, miscalculations etc. before submitting your answer. Submit Answer Retry Entire Group 9 more group attempts remaining
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