CH3 но H,SO4, heat OH CH3 CH3 CH3 CH3 CH3 В. А. CH3 CH2 CH3 CH3 D. C.

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Chapter1: Chemical Foundations
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What is the major of the following reaction?

The image depicts a chemical reaction and possible products. 

Starting Compound:
- The initial structure is a cyclohexanol derivative, with a hydroxyl group (OH) and a methyl group (CH3) attached to the ring. 

Reaction Conditions:
- The reaction involves sulfuric acid (H2SO4) and heat, indicating an acid-catalyzed dehydration process.

Possible Products:

A. The product features a double bond within the cyclohexane ring, with two methyl groups (CH3) at adjacent positions.

B. This is a bicyclic structure with a double bond in one of the rings and a methyl group (CH3) attached.

C. The structure features a terminal alkene (CH2) attached to the cyclohexane ring, along with a methyl group (CH3) on the ring.

D. Similar to option A, this structure has a double bond within the cyclohexane ring, but the positions of the methyl groups differ.

These structures represent potential alkenes that could form through the elimination of water from the starting alcohol under the given reaction conditions.
Transcribed Image Text:The image depicts a chemical reaction and possible products. Starting Compound: - The initial structure is a cyclohexanol derivative, with a hydroxyl group (OH) and a methyl group (CH3) attached to the ring. Reaction Conditions: - The reaction involves sulfuric acid (H2SO4) and heat, indicating an acid-catalyzed dehydration process. Possible Products: A. The product features a double bond within the cyclohexane ring, with two methyl groups (CH3) at adjacent positions. B. This is a bicyclic structure with a double bond in one of the rings and a methyl group (CH3) attached. C. The structure features a terminal alkene (CH2) attached to the cyclohexane ring, along with a methyl group (CH3) on the ring. D. Similar to option A, this structure has a double bond within the cyclohexane ring, but the positions of the methyl groups differ. These structures represent potential alkenes that could form through the elimination of water from the starting alcohol under the given reaction conditions.
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