LCH2CH2CH3 CH2CH3 H HI CH3 CH3 CH2CH2CH3 CH2CH3 CH2CH3 CH2CH3 H'H HH H'H

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Chapter1: Chemical Foundations
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Which structure is eclipsed hexane?

The image presents four structural representations of cyclopropane derivatives with substituents:

1. **Structure 1**: A cyclopropane ring (triangular shape) with three carbon atoms is depicted. Each carbon atom is bonded to one hydrogen atom and two of them are bonded to ethyl groups (CH₂CH₃). 

2. **Structure 2**: Similar to the first structure, this molecule also features a cyclopropane ring. Two carbon atoms are each bonded to a hydrogen and an ethyl group, while the third carbon is bonded to another hydrogen.

3. **Structure 3**: The cyclopropane ring here shows two of its carbon atoms bonded to hydrogen atoms, with the third carbon bonded to a propyl group (CH₂CH₂CH₃).

4. **Structure 4**: In this structure, one carbon atom of the cyclopropane ring is bonded to a methyl group (CH₃) and an ethyl group (CH₂CH₃), while the other two carbons are each bonded to a hydrogen atom.

These diagrams illustrate the concept of substituent variation on a cyclopropane ring, demonstrating different alkyl group attachments on the carbon atoms of the three-membered ring.
Transcribed Image Text:The image presents four structural representations of cyclopropane derivatives with substituents: 1. **Structure 1**: A cyclopropane ring (triangular shape) with three carbon atoms is depicted. Each carbon atom is bonded to one hydrogen atom and two of them are bonded to ethyl groups (CH₂CH₃). 2. **Structure 2**: Similar to the first structure, this molecule also features a cyclopropane ring. Two carbon atoms are each bonded to a hydrogen and an ethyl group, while the third carbon is bonded to another hydrogen. 3. **Structure 3**: The cyclopropane ring here shows two of its carbon atoms bonded to hydrogen atoms, with the third carbon bonded to a propyl group (CH₂CH₂CH₃). 4. **Structure 4**: In this structure, one carbon atom of the cyclopropane ring is bonded to a methyl group (CH₃) and an ethyl group (CH₂CH₃), while the other two carbons are each bonded to a hydrogen atom. These diagrams illustrate the concept of substituent variation on a cyclopropane ring, demonstrating different alkyl group attachments on the carbon atoms of the three-membered ring.
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