Ketones are converted to enolates on treatment with base. Draw the structures of the enolates formed when the ketone shown is treated with either LDA at -78ºC or with LDA and MeOH at 25ºC. Include all lone pairs of electrons and nonzero formal charges. Do not include counter ions.

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Ketones are converted to enolates on treatment with base. Draw the structures of the enolates formed when the ketone shown is treated with either LDA  at -78ºC or with LDA and MeOH at 25ºC. Include all lone pairs of electrons and nonzero formal charges. Do not include counter ions.

The image is a structural diagram of the organic compound 2-butanone, also known as methyl ethyl ketone (MEK). 

### Explanation of the Diagram:

- **Carbon Backbone:**
  - The compound consists of a four-carbon chain. The central carbon is double-bonded to an oxygen atom (represented as a carbonyl group).
  
- **Functional Groups:**
  - The left side shows a methyl group (CH₃), attached to the carbonyl group.
  - The right side also has a methyl group attached to the third carbon atom in the chain.
  
- **Carbonyl Group:**
  - A key feature of this compound is the carbonyl group (C=O), which is characteristic of ketones.

This structure showcases the basic features of ketones, where the carbonyl group is located within the carbon chain (not at the end), differentiating it from aldehydes. Understanding this structure is fundamental to organic chemistry, as it plays a significant role in various chemical reactions and industrial applications.
Transcribed Image Text:The image is a structural diagram of the organic compound 2-butanone, also known as methyl ethyl ketone (MEK). ### Explanation of the Diagram: - **Carbon Backbone:** - The compound consists of a four-carbon chain. The central carbon is double-bonded to an oxygen atom (represented as a carbonyl group). - **Functional Groups:** - The left side shows a methyl group (CH₃), attached to the carbonyl group. - The right side also has a methyl group attached to the third carbon atom in the chain. - **Carbonyl Group:** - A key feature of this compound is the carbonyl group (C=O), which is characteristic of ketones. This structure showcases the basic features of ketones, where the carbonyl group is located within the carbon chain (not at the end), differentiating it from aldehydes. Understanding this structure is fundamental to organic chemistry, as it plays a significant role in various chemical reactions and industrial applications.
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