Consider the cyclohexane below. 16 CH₂ N 3 ill CH₂

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# Cyclohexane Chair Conformation and Ring Inversion

## Instructions

Use the cyclohexane conformation drawing tool and guide points to draw the result of the ring inversion of the original chair conformation from Part 1.

## Diagram Explanation

The diagram shows a cyclohexane molecule in a chair conformation. The atoms in the ring are numbered 1 through 6 in order to guide the drawing process. The conformation resembles a ‘zig-zag’ shape, typical of the chair conformation.

## Drawing Tool

- **Click and drag** to start drawing a structure.
- Tool options available for drawing include a pencil for freehand sketching, various atom types, and bonds for constructing molecules.
- There is an option to undo or redo actions, as well as to clear the drawing area.

Use these guidelines and tools to accurately draw the ring inversion of the cyclohexane chair conformation.
Transcribed Image Text:# Cyclohexane Chair Conformation and Ring Inversion ## Instructions Use the cyclohexane conformation drawing tool and guide points to draw the result of the ring inversion of the original chair conformation from Part 1. ## Diagram Explanation The diagram shows a cyclohexane molecule in a chair conformation. The atoms in the ring are numbered 1 through 6 in order to guide the drawing process. The conformation resembles a ‘zig-zag’ shape, typical of the chair conformation. ## Drawing Tool - **Click and drag** to start drawing a structure. - Tool options available for drawing include a pencil for freehand sketching, various atom types, and bonds for constructing molecules. - There is an option to undo or redo actions, as well as to clear the drawing area. Use these guidelines and tools to accurately draw the ring inversion of the cyclohexane chair conformation.
**Consider the cyclohexane below.**

The image depicts a structural diagram of a cyclohexane molecule with two methyl (CH₃) groups attached. The cyclohexane is displayed as a hexagon with the following details:

- The carbon atoms in the cyclohexane ring are numbered 1 through 6.
- Two CH₃ groups are shown as substituents on the cyclohexane ring.
- One CH₃ group is attached to the carbon labeled as 1.
- The second CH₃ group is attached to the carbon labeled as 2.
  
The diagram uses wedge-shaped bonds indicating that the CH₃ groups are substituents situated above the plane of the cyclohexane ring, showing the 3D structure typically found in chair conformations.
Transcribed Image Text:**Consider the cyclohexane below.** The image depicts a structural diagram of a cyclohexane molecule with two methyl (CH₃) groups attached. The cyclohexane is displayed as a hexagon with the following details: - The carbon atoms in the cyclohexane ring are numbered 1 through 6. - Two CH₃ groups are shown as substituents on the cyclohexane ring. - One CH₃ group is attached to the carbon labeled as 1. - The second CH₃ group is attached to the carbon labeled as 2. The diagram uses wedge-shaped bonds indicating that the CH₃ groups are substituents situated above the plane of the cyclohexane ring, showing the 3D structure typically found in chair conformations.
Expert Solution
Step 1: Interpretation of given problem

Given I'd cyclohexane derivative.

The name of given compound is,

Cis-1,2-dimethylcyclohexane.

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