What is the relationship between the two molecules shown below?   A) enantiomers B) diastereomers C) conformational isomers D) constitutional isomers E) identical

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What is the relationship between the two molecules shown below?
 
A) enantiomers
B) diastereomers
C) conformational isomers
D) constitutional isomers
E) identical
 
**Question:**

What is the relationship between the two molecules shown below?

**Image Description:**

The image displays two chemical structures:

1. On the left, a 3D structure of a cyclohexane ring with various hydrogen (H) and hydroxyl (OH) groups attached. There is also a methyl group (CH₃) attached to the ring.

2. On the right, a 2D representation of a cyclohexane ring with a hydroxyl (OH) group pointing upwards, indicating its stereochemistry.

**Multiple Choice Options:**

A) enantiomers  
B) diastereomers  
C) conformational isomers  
D) constitutional isomers  
E) identical

**Graph/Diagram Explanation:**

The left molecule uses wedge and dash notation to show the 3D orientation of the groups attached to the cyclohexane ring. The right molecule uses a standard bond-line structure with a wedge indicating the position of the OH group relative to the plane of the molecule.
Transcribed Image Text:**Question:** What is the relationship between the two molecules shown below? **Image Description:** The image displays two chemical structures: 1. On the left, a 3D structure of a cyclohexane ring with various hydrogen (H) and hydroxyl (OH) groups attached. There is also a methyl group (CH₃) attached to the ring. 2. On the right, a 2D representation of a cyclohexane ring with a hydroxyl (OH) group pointing upwards, indicating its stereochemistry. **Multiple Choice Options:** A) enantiomers B) diastereomers C) conformational isomers D) constitutional isomers E) identical **Graph/Diagram Explanation:** The left molecule uses wedge and dash notation to show the 3D orientation of the groups attached to the cyclohexane ring. The right molecule uses a standard bond-line structure with a wedge indicating the position of the OH group relative to the plane of the molecule.
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