Which of the following are constitutional isomers of each other? н Н CH3 н CH3 Н. H CH3 H CH3 CH₂CH3 II Н. н CH₂ CH3 III Н CH₂ н Н н CH₂ CH₂CH₂CH₂ N

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**Question:**  
Which of the following are constitutional isomers of each other?

**Diagram Explanation:**

There are four cyclohexane rings labeled I, II, III, and IV. Each ring has different substituents attached:

- **I**: A cyclohexane with a single methyl group (CH₃) and five hydrogen atoms (H).

- **II**: A cyclohexane with two methyl groups (CH₃) and one ethyl group (CH₂CH₃), alongside three hydrogen atoms (H).

- **III**: A cyclohexane with three methyl groups (CH₃) and three hydrogen atoms (H).

- **IV**: A cyclohexane with one methyl group (CH₃), one propyl group (CH₂CH₂CH₃), and four hydrogen atoms (H).

These structures are all variations of cyclohexane with different substituents, which makes them potential constitutional isomers. Constitutional isomers are compounds with the same molecular formula but different connectivity of atoms.
Transcribed Image Text:**Question:** Which of the following are constitutional isomers of each other? **Diagram Explanation:** There are four cyclohexane rings labeled I, II, III, and IV. Each ring has different substituents attached: - **I**: A cyclohexane with a single methyl group (CH₃) and five hydrogen atoms (H). - **II**: A cyclohexane with two methyl groups (CH₃) and one ethyl group (CH₂CH₃), alongside three hydrogen atoms (H). - **III**: A cyclohexane with three methyl groups (CH₃) and three hydrogen atoms (H). - **IV**: A cyclohexane with one methyl group (CH₃), one propyl group (CH₂CH₂CH₃), and four hydrogen atoms (H). These structures are all variations of cyclohexane with different substituents, which makes them potential constitutional isomers. Constitutional isomers are compounds with the same molecular formula but different connectivity of atoms.
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