Starting with triphenylphosphine and any desired alkyl halide, plus any desired aldehyde or ketone, show how the following alkene can be prepared via a Wittig synthesis. You do not have to specify which base is used.

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**Title: Wittig Synthesis of an Alkene**

**Instructions:**
Starting with triphenylphosphine and any desired alkyl halide, plus any desired aldehyde or ketone, show how the following alkene can be prepared via a Wittig synthesis. You do not have to specify which base is used.

**Molecular Diagram Description:**
- The diagram illustrates a cyclic alkene structure with the molecular formula **C\(_9\)H\(_{14}\)O\(_2\)**.
- The structural representation includes a six-membered carbon ring (cyclohexene) connected to an alkyl chain.
- Attached to the terminal carbon of the alkyl chain is an ethyl ester group represented as **-CO\(_2\)C\(_2\)H\(_5\)**. 

This synthesis requires components such as triphenylphosphine, an alkyl halide, and an aldehyde or ketone to form the alkene through a Wittig reaction.
Transcribed Image Text:**Title: Wittig Synthesis of an Alkene** **Instructions:** Starting with triphenylphosphine and any desired alkyl halide, plus any desired aldehyde or ketone, show how the following alkene can be prepared via a Wittig synthesis. You do not have to specify which base is used. **Molecular Diagram Description:** - The diagram illustrates a cyclic alkene structure with the molecular formula **C\(_9\)H\(_{14}\)O\(_2\)**. - The structural representation includes a six-membered carbon ring (cyclohexene) connected to an alkyl chain. - Attached to the terminal carbon of the alkyl chain is an ethyl ester group represented as **-CO\(_2\)C\(_2\)H\(_5\)**. This synthesis requires components such as triphenylphosphine, an alkyl halide, and an aldehyde or ketone to form the alkene through a Wittig reaction.
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