Four of the constitutional isomers of C5H10 that are cyclic compounds are drawn here. Draw the missing cyclic isomer.

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
ChapterL2: Mass Spectrometry
Section: Chapter Questions
Problem 20CTQ
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**Title: Exploring Constitutional Isomers of \( \text{C}_5\text{H}_{10} \): Cyclic Compounds**

In this educational task, you are presented with four constitutional isomers of \( \text{C}_5\text{H}_{10} \) that are cyclic compounds. Your challenge is to identify and draw the missing cyclic isomer.

**Diagrams:**

1. **Cyclopentane:** A simple five-membered ring with no branches or additional features.
   
2. **Methylcyclobutane:** A four-membered ring with one methyl group (CH\(_3\)) attached.
   
3. **Ethylcyclopropane:** A three-membered ring with an ethyl group (CH\(_2\)CH\(_3\)) attached.
   
4. **Isopropylcyclopropane:** A three-membered ring with an isopropyl group ((CH\(_3\))\(_2\)CH) attached.

**Objective:**

Examine the cyclic structures provided and use your understanding of molecular structure and symmetry to determine the missing cyclic isomer of \( \text{C}_5\text{H}_{10} \).
Transcribed Image Text:**Title: Exploring Constitutional Isomers of \( \text{C}_5\text{H}_{10} \): Cyclic Compounds** In this educational task, you are presented with four constitutional isomers of \( \text{C}_5\text{H}_{10} \) that are cyclic compounds. Your challenge is to identify and draw the missing cyclic isomer. **Diagrams:** 1. **Cyclopentane:** A simple five-membered ring with no branches or additional features. 2. **Methylcyclobutane:** A four-membered ring with one methyl group (CH\(_3\)) attached. 3. **Ethylcyclopropane:** A three-membered ring with an ethyl group (CH\(_2\)CH\(_3\)) attached. 4. **Isopropylcyclopropane:** A three-membered ring with an isopropyl group ((CH\(_3\))\(_2\)CH) attached. **Objective:** Examine the cyclic structures provided and use your understanding of molecular structure and symmetry to determine the missing cyclic isomer of \( \text{C}_5\text{H}_{10} \).
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