What is the major product obtained from the following reaction? CH,OH Cl2

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Question:** What is the major product obtained from the following reaction?

**Reaction Details:**

- **Reactants:**
  - A molecule with two double-bonded carbon atoms (alkene) branching from a longer carbon chain.
  - Chlorine gas (\( \text{Cl}_2 \))

- **Reagent:**
  - Methanol (\( \text{CH}_3\text{OH} \))

**Reaction Type:** 

This reaction typically involves the addition of halogens to alkenes, where chlorine (\( \text{Cl}_2 \)) adds across the double bond. In the presence of methanol, the solvent can sometimes act as a nucleophile, potentially affecting the reaction pathway or the product distribution.

**Expected Major Product:**

The major product is likely the result of the electrophilic addition of chlorine across the double bond, possibly forming a halohydrin if methanol participates, or a simple vicinal dichloro compound if it does not. Predicting the exact structure would depend on the specific conditions and the role of methanol in the reaction.
Transcribed Image Text:**Question:** What is the major product obtained from the following reaction? **Reaction Details:** - **Reactants:** - A molecule with two double-bonded carbon atoms (alkene) branching from a longer carbon chain. - Chlorine gas (\( \text{Cl}_2 \)) - **Reagent:** - Methanol (\( \text{CH}_3\text{OH} \)) **Reaction Type:** This reaction typically involves the addition of halogens to alkenes, where chlorine (\( \text{Cl}_2 \)) adds across the double bond. In the presence of methanol, the solvent can sometimes act as a nucleophile, potentially affecting the reaction pathway or the product distribution. **Expected Major Product:** The major product is likely the result of the electrophilic addition of chlorine across the double bond, possibly forming a halohydrin if methanol participates, or a simple vicinal dichloro compound if it does not. Predicting the exact structure would depend on the specific conditions and the role of methanol in the reaction.
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