12. Which products, including stereoisomers, are generated from the following reaction? 1.) BH3-THF 2.) NaOH, H2O2 CH3 OH H B) OH A) CH3 "CH3 ÕH CH3 as the only stereoisomer enantiomer + enantiomer D) HO "CH3 "CH3 ÕH enantiomer + enantiomer

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Chapter1: Chemical Foundations
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**Question 12**:  

*Which products, including stereoisomers, are generated from the following reaction?*

**Reaction Scheme**:
1. \( \text{BH}_3 \cdot \text{THF} \)
2. \( \text{NaOH, H}_2\text{O}_2 \)

**Answer Choices**:

- **A)** Cyclopentane with a hydroxyl group (\( \text{OH} \)) and deuterium (\( \text{D} \)), where the configuration shows \( \text{D} \), \( \text{H} \), \( \text{CH}_3 \), and \( \text{OH} \) attached to a central carbon, resulting in a pair of enantiomers.
  
- **B)** Similar cyclic structure as in A, with different stereochemistry, also resulting in a pair of enantiomers.

- **C)** Cyclopentane with a hydroxyl group (\( \text{OH} \)) and deuterium (\( \text{D} \)), where the given stereochemistry is indicated as the only stereoisomer.

- **D)** Another stereochemical arrangement, resulting in a pair of enantiomers.

- **E)** Different stereochemical arrangement, also resulting in a pair of enantiomers.

*Note*: Each choice provides different stereochemical configurations for the cyclopentane derivative resulting from the specified reaction conditions. Selections focus on different potential stereoisomeric outcomes.
Transcribed Image Text:**Question 12**: *Which products, including stereoisomers, are generated from the following reaction?* **Reaction Scheme**: 1. \( \text{BH}_3 \cdot \text{THF} \) 2. \( \text{NaOH, H}_2\text{O}_2 \) **Answer Choices**: - **A)** Cyclopentane with a hydroxyl group (\( \text{OH} \)) and deuterium (\( \text{D} \)), where the configuration shows \( \text{D} \), \( \text{H} \), \( \text{CH}_3 \), and \( \text{OH} \) attached to a central carbon, resulting in a pair of enantiomers. - **B)** Similar cyclic structure as in A, with different stereochemistry, also resulting in a pair of enantiomers. - **C)** Cyclopentane with a hydroxyl group (\( \text{OH} \)) and deuterium (\( \text{D} \)), where the given stereochemistry is indicated as the only stereoisomer. - **D)** Another stereochemical arrangement, resulting in a pair of enantiomers. - **E)** Different stereochemical arrangement, also resulting in a pair of enantiomers. *Note*: Each choice provides different stereochemical configurations for the cyclopentane derivative resulting from the specified reaction conditions. Selections focus on different potential stereoisomeric outcomes.
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