provide chari conformations and chair flip, which one is most stable and why?

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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provide chari conformations and chair flip, which one is most stable and why?

The image contains two structural diagrams of organic molecules. Each diagram represents a cyclohexane ring with substituents. Here are the details:

**Top Structure:**
- The base structure is a cyclohexane ring.
- There is a bromine (Br) atom attached to the carbon atom in the 1-position, indicated with a solid wedge, showing that it is above the plane of the ring.
- A methyl group (CH₃) is attached to the carbon in the 2-position, indicated with a dashed wedge, showing it is below the plane of the ring.
- An ethyl group (CH₂CH₃) is attached to the carbon in the 3-position, also indicated with a dashed wedge, showing it is below the plane of the ring.

**Bottom Structure:**
- The base structure is again a cyclohexane ring.
- The bromine (Br) atom is attached to the carbon in the 1-position, indicated with a solid wedge, showing it is above the plane of the ring.
- A methyl group (CH₃) is attached to the carbon in the 2-position, indicated with a solid wedge, indicating it is above the plane.
- An ethyl group (CH₂CH₃) is attached to the carbon in the 3-position, indicated with a solid wedge, showing it is above the plane.

These diagrams show stereochemical (3D) differences in the orientation of the attached groups on the cyclohexane ring.
Transcribed Image Text:The image contains two structural diagrams of organic molecules. Each diagram represents a cyclohexane ring with substituents. Here are the details: **Top Structure:** - The base structure is a cyclohexane ring. - There is a bromine (Br) atom attached to the carbon atom in the 1-position, indicated with a solid wedge, showing that it is above the plane of the ring. - A methyl group (CH₃) is attached to the carbon in the 2-position, indicated with a dashed wedge, showing it is below the plane of the ring. - An ethyl group (CH₂CH₃) is attached to the carbon in the 3-position, also indicated with a dashed wedge, showing it is below the plane of the ring. **Bottom Structure:** - The base structure is again a cyclohexane ring. - The bromine (Br) atom is attached to the carbon in the 1-position, indicated with a solid wedge, showing it is above the plane of the ring. - A methyl group (CH₃) is attached to the carbon in the 2-position, indicated with a solid wedge, indicating it is above the plane. - An ethyl group (CH₂CH₃) is attached to the carbon in the 3-position, indicated with a solid wedge, showing it is above the plane. These diagrams show stereochemical (3D) differences in the orientation of the attached groups on the cyclohexane ring.
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