Predict the major product for this reaction. Ignore inorganic byproducts. H3O+

Chemistry
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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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**Question 4 of 32**

**Predict the major product for this reaction. Ignore inorganic byproducts.**

The image depicts a chemical reaction process.

### Reaction Details:

1. **Reactant:**
   - The structure shows a hydrocarbon chain with a branched alkyne group on the right.

2. **Reagent:**
   - H₃O⁺ (hydronium ion) is added to the reaction.

3. **Product:**
   - The proposed major product is displayed in a dashed box. The structure is a hydrocarbon chain with two hydroxyl (OH) groups added.

### Explanation:

- **Reactant Transformation:** The original alkyne undergoes hydration in an acidic medium.
- **Product Formation:** The result is a diol, specifically with the two OH groups on adjacent carbon atoms.

This reaction is an example of a hydration process in organic chemistry, leading to the formation of alcohols from alkynes under acidic conditions.
Transcribed Image Text:**Question 4 of 32** **Predict the major product for this reaction. Ignore inorganic byproducts.** The image depicts a chemical reaction process. ### Reaction Details: 1. **Reactant:** - The structure shows a hydrocarbon chain with a branched alkyne group on the right. 2. **Reagent:** - H₃O⁺ (hydronium ion) is added to the reaction. 3. **Product:** - The proposed major product is displayed in a dashed box. The structure is a hydrocarbon chain with two hydroxyl (OH) groups added. ### Explanation: - **Reactant Transformation:** The original alkyne undergoes hydration in an acidic medium. - **Product Formation:** The result is a diol, specifically with the two OH groups on adjacent carbon atoms. This reaction is an example of a hydration process in organic chemistry, leading to the formation of alcohols from alkynes under acidic conditions.
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