major product of dehydration reaction using H2SO4

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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major product of dehydration reaction using H2SO4

This image depicts the chemical structure of 2,6-Dimethylcyclohexanol. 

**Explanation of the Structure:**

1. **Cyclohexane Ring:** 
   - The base structure is a cyclohexane ring, which is a six-membered carbon ring with alternating single bonds.

2. **Hydroxyl Group (-OH):** 
   - There is a hydroxyl group (OH) attached to the first carbon atom of the cyclohexane ring. The oxygen atom is shown in red to highlight the functional group.

3. **Methyl Groups (CH₃):**
   - Two methyl groups (CH₃) are attached to the second and sixth carbon atoms of the cyclohexane ring. This specific placement of methyl groups classifies the compound as 2,6-dimethyl.

The image helps in visualizing the molecular geometry of 2,6-Dimethylcyclohexanol, which is important for understanding its chemical properties and behavior in different reactions.
Transcribed Image Text:This image depicts the chemical structure of 2,6-Dimethylcyclohexanol. **Explanation of the Structure:** 1. **Cyclohexane Ring:** - The base structure is a cyclohexane ring, which is a six-membered carbon ring with alternating single bonds. 2. **Hydroxyl Group (-OH):** - There is a hydroxyl group (OH) attached to the first carbon atom of the cyclohexane ring. The oxygen atom is shown in red to highlight the functional group. 3. **Methyl Groups (CH₃):** - Two methyl groups (CH₃) are attached to the second and sixth carbon atoms of the cyclohexane ring. This specific placement of methyl groups classifies the compound as 2,6-dimethyl. The image helps in visualizing the molecular geometry of 2,6-Dimethylcyclohexanol, which is important for understanding its chemical properties and behavior in different reactions.
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