Draw a resonance structure that shifts a pi bond to a new position. Include all hydrogen atoms and lone pairs in your structure. :0:

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Draw a resonance structure that shifts a pi bond to a new position. Include all hydrogen atoms and lone pairs in your structure.

**Instruction:**

Draw a resonance structure that shifts a pi bond to a new position. Include all hydrogen atoms and lone pairs in your structure.

**Description of the Diagram:**

The diagram shows a structural formula of a phenylacetone molecule. Here are the key features of the structure:

- **Benzene Ring**: The molecule contains a benzene ring on the left side. This ring has alternating single and double bonds between the carbon atoms. 

- **Acetone Group**: Attached to the benzene ring, there is an acetone group. This group includes a carbon atom double-bonded to an oxygen atom (C=O).

- **Lone Pairs**: The oxygen atom in the acetone group has two lone pairs of electrons, represented by two pairs of dots above it.

- **Arrow**: There is a downward-pointing arrow below the entire structure, indicating the direction or transformation to be applied, which is related to shifting a pi bond.

## Explanation

This diagram is used to help understand resonance structures in organic chemistry, focusing on how pi bonds can shift positions within a molecule. The task requires the rearrangement of electrons to depict an alternative resonance form while maintaining the overall molecular structure.
Transcribed Image Text:**Instruction:** Draw a resonance structure that shifts a pi bond to a new position. Include all hydrogen atoms and lone pairs in your structure. **Description of the Diagram:** The diagram shows a structural formula of a phenylacetone molecule. Here are the key features of the structure: - **Benzene Ring**: The molecule contains a benzene ring on the left side. This ring has alternating single and double bonds between the carbon atoms. - **Acetone Group**: Attached to the benzene ring, there is an acetone group. This group includes a carbon atom double-bonded to an oxygen atom (C=O). - **Lone Pairs**: The oxygen atom in the acetone group has two lone pairs of electrons, represented by two pairs of dots above it. - **Arrow**: There is a downward-pointing arrow below the entire structure, indicating the direction or transformation to be applied, which is related to shifting a pi bond. ## Explanation This diagram is used to help understand resonance structures in organic chemistry, focusing on how pi bonds can shift positions within a molecule. The task requires the rearrangement of electrons to depict an alternative resonance form while maintaining the overall molecular structure.
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