Synthesis practice: Which alkene should be used with hydroboration to make the following alcohol. OH 1) BH3 2) H₂O₂ HOH

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**Synthesis Practice: Which Alkene Should Be Used with Hydroboration to Make the Following Alcohol?**

In this exercise, you are tasked with determining the alkene that, when subjected to hydroboration, yields a specific alcohol product.

**Reaction Conditions:**
1. \( \text{BH}_3 \)
2. \( \text{H}_2\text{O}_2/\text{OH}^- \)

**Target Alcohol Structure:**
The reaction yields an alcohol with a hydroxyl group (-OH) attached to a branched alkane chain, specifically placed on the second carbon.

**Explanation:**
- The target molecule is an alcohol with the hydroxyl group on a secondary carbon.
- The hydroboration-oxidation process proceeds with anti-Markovnikov selectivity, meaning the OH group attaches to the less substituted carbon of the alkene.
- Your task is to select the correct alkene that aligns with this mechanism to produce the specified alcohol as the primary product.
Transcribed Image Text:**Synthesis Practice: Which Alkene Should Be Used with Hydroboration to Make the Following Alcohol?** In this exercise, you are tasked with determining the alkene that, when subjected to hydroboration, yields a specific alcohol product. **Reaction Conditions:** 1. \( \text{BH}_3 \) 2. \( \text{H}_2\text{O}_2/\text{OH}^- \) **Target Alcohol Structure:** The reaction yields an alcohol with a hydroxyl group (-OH) attached to a branched alkane chain, specifically placed on the second carbon. **Explanation:** - The target molecule is an alcohol with the hydroxyl group on a secondary carbon. - The hydroboration-oxidation process proceeds with anti-Markovnikov selectivity, meaning the OH group attaches to the less substituted carbon of the alkene. - Your task is to select the correct alkene that aligns with this mechanism to produce the specified alcohol as the primary product.
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