Draw the structure of an alkyl halide that could be used in an E2 reaction to give the alkene shown as the only alkene product: Select Draw C Rings H F More Cl Br I Erase CH3 -6 KOtBu

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Chapter1: Chemical Foundations
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**Exercise: Drawing an Alkyl Halide for E2 Reaction**

**Objective:** Draw the structure of an alkyl halide that could be used in an E2 reaction to produce the alkene shown as the only alkene product.

**Alkene Product:**
- The structure on the right depicts a hexene ring with a methyl group (CH₃) attached at the top and a double bond in the ring. 

**Reagents:**
- The reaction involves potassium tert-butoxide (KOtBu), a base commonly used in E2 reactions.

**Diagram Explanation:**
- On the left is an interactive area for drawing chemical structures.
- Tools available include options to draw bonds (single, double, triple), and add elements (C, H, F, Cl, Br, I).
- The structure drawing area supports constructing the necessary alkyl halide to undergo an E2 reaction with KOtBu to produce the alkene shown.

**Hints for Solution:**
- Identify a suitable precursor by replacing the eliminated hydrogen from the alkene’s position with a halide.
- Common choices for E2 reactions are secondary or tertiary alkyl halides.
Transcribed Image Text:**Exercise: Drawing an Alkyl Halide for E2 Reaction** **Objective:** Draw the structure of an alkyl halide that could be used in an E2 reaction to produce the alkene shown as the only alkene product. **Alkene Product:** - The structure on the right depicts a hexene ring with a methyl group (CH₃) attached at the top and a double bond in the ring. **Reagents:** - The reaction involves potassium tert-butoxide (KOtBu), a base commonly used in E2 reactions. **Diagram Explanation:** - On the left is an interactive area for drawing chemical structures. - Tools available include options to draw bonds (single, double, triple), and add elements (C, H, F, Cl, Br, I). - The structure drawing area supports constructing the necessary alkyl halide to undergo an E2 reaction with KOtBu to produce the alkene shown. **Hints for Solution:** - Identify a suitable precursor by replacing the eliminated hydrogen from the alkene’s position with a halide. - Common choices for E2 reactions are secondary or tertiary alkyl halides.
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