Draw the organic product of the following reaction. CH=CH2 Cl2, H20

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Draw the product of reaction

**Organic Chemistry Reaction**

**Task:**  
Draw the organic product of the following reaction.

**Reaction Details:**
- **Reactant:** An alkene with a benzene ring attached (styrene).
- **Reagents:** Cl₂, H₂O.

**Instructions:**
- You do not have to consider stereochemistry.
- Indicate regiochemistry when relevant.
- The aromatic ring, when present, is unreactive in all cases.
- Do not draw organic or inorganic by-products.

**Notes for Students:**
In this reaction, consider how the chlorine and water might add across the double bond of the alkene while leaving the benzene ring unchanged. Focus on showing the correct addition product.
Transcribed Image Text:**Organic Chemistry Reaction** **Task:** Draw the organic product of the following reaction. **Reaction Details:** - **Reactant:** An alkene with a benzene ring attached (styrene). - **Reagents:** Cl₂, H₂O. **Instructions:** - You do not have to consider stereochemistry. - Indicate regiochemistry when relevant. - The aromatic ring, when present, is unreactive in all cases. - Do not draw organic or inorganic by-products. **Notes for Students:** In this reaction, consider how the chlorine and water might add across the double bond of the alkene while leaving the benzene ring unchanged. Focus on showing the correct addition product.
**Transcription for Educational Website**

---

**Title:** Reaction Products and Stereochemistry

**Instructions:** Draw the products of the following reactions, indicating both regiochemistry and stereochemistry when appropriate.

**Chemical Reaction:**

- Starting compound: A cyclohexane ring with a methyl (CH₃) group attached.
- Reaction conditions:
  1. Hg(OAc)₂, H₂O
  2. NaBH₄

**Guidelines:**

- Use wedge and hash bonds ONLY when needed to show reaction stereochemistry.
- In cases where there is more than one answer, just draw one.

**Note:** The reaction involves oxymercuration-demercuration, which typically adds a hydroxyl group (OH) to the more substituted carbon in an alkene, resulting in an alcohol product. Make sure to represent the stereochemistry accurately if applicable.

---

**Diagram Explanation:**

- The diagram is an organic chemistry reaction problem that involves transforming a cyclohexane derivative.
- It specifies the reagents used in the transformation: mercury(II) acetate (Hg(OAc)₂) in water followed by sodium borohydride (NaBH₄).

This information is intended to guide students in understanding and drawing the chemical reaction products with correct stereochemical representation.
Transcribed Image Text:**Transcription for Educational Website** --- **Title:** Reaction Products and Stereochemistry **Instructions:** Draw the products of the following reactions, indicating both regiochemistry and stereochemistry when appropriate. **Chemical Reaction:** - Starting compound: A cyclohexane ring with a methyl (CH₃) group attached. - Reaction conditions: 1. Hg(OAc)₂, H₂O 2. NaBH₄ **Guidelines:** - Use wedge and hash bonds ONLY when needed to show reaction stereochemistry. - In cases where there is more than one answer, just draw one. **Note:** The reaction involves oxymercuration-demercuration, which typically adds a hydroxyl group (OH) to the more substituted carbon in an alkene, resulting in an alcohol product. Make sure to represent the stereochemistry accurately if applicable. --- **Diagram Explanation:** - The diagram is an organic chemistry reaction problem that involves transforming a cyclohexane derivative. - It specifies the reagents used in the transformation: mercury(II) acetate (Hg(OAc)₂) in water followed by sodium borohydride (NaBH₄). This information is intended to guide students in understanding and drawing the chemical reaction products with correct stereochemical representation.
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