Br H3C. a) Draw a chair conformation for this compound b) Draw the chair-flip of your chair "CH3 c) Circle the more stable of the two chairs

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Chapter1: Chemical Foundations
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Please solve for A, B, and C

### Cyclohexane Chair Conformation Exercise

This exercise involves drawing chair conformations for a cyclohexane derivative. The compound shown is a substituted cyclohexane with a bromine (Br) and two methyl (CH₃) groups.

#### Tasks:

a) **Draw a chair conformation for this compound.**
   - Sketch the cyclohexane molecule in a chair conformation, placing each substituent at appropriate axial or equatorial positions.

b) **Draw the chair-flip of your chair.**
   - Illustrate the molecule after performing the chair flip. Ensure that substituents switch from axial to equatorial positions and vice versa.

c) **Circle the more stable of the two chairs.**
   - Identify and circle the conformation where larger groups (in this case, the bromine and methyl groups) are in equatorial positions as this is generally the more stable conformation due to reduced steric strain.
Transcribed Image Text:### Cyclohexane Chair Conformation Exercise This exercise involves drawing chair conformations for a cyclohexane derivative. The compound shown is a substituted cyclohexane with a bromine (Br) and two methyl (CH₃) groups. #### Tasks: a) **Draw a chair conformation for this compound.** - Sketch the cyclohexane molecule in a chair conformation, placing each substituent at appropriate axial or equatorial positions. b) **Draw the chair-flip of your chair.** - Illustrate the molecule after performing the chair flip. Ensure that substituents switch from axial to equatorial positions and vice versa. c) **Circle the more stable of the two chairs.** - Identify and circle the conformation where larger groups (in this case, the bromine and methyl groups) are in equatorial positions as this is generally the more stable conformation due to reduced steric strain.
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