O Draw all important resonance structures for the compound shown below.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Can someone draw all the resonance structures attached?

**Resonance Structures Exercise**

**Objective:**

Draw all important resonance structures for the compound shown below.

**Compound Structure:**

- The compound features a benzene ring with an attached oxygen-containing methoxy group (-OCH₃) at the 1-position.
- At the 4-position, the benzene ring has an allylic group (a carbon chain with a double bond) where the terminal carbon carries a positive charge.

**Instructions:**

1. **Identify Resonance Contributors:**
   - Determine ways to delocalize electron density and positive charge while maintaining the molecular skeleton.
   
2. **Draw Resonance Arrows:**
   - Use double-headed arrows to indicate the movement of electrons.

3. **Key Considerations:**
   - Ensure all resonance structures maintain charge conservation.
   - The oxygen can participate in resonance due to its lone pair and potential for delocalization.

This exercise helps in understanding the concept of resonance, which is crucial for analyzing the stability and reactivity of organic compounds.
Transcribed Image Text:**Resonance Structures Exercise** **Objective:** Draw all important resonance structures for the compound shown below. **Compound Structure:** - The compound features a benzene ring with an attached oxygen-containing methoxy group (-OCH₃) at the 1-position. - At the 4-position, the benzene ring has an allylic group (a carbon chain with a double bond) where the terminal carbon carries a positive charge. **Instructions:** 1. **Identify Resonance Contributors:** - Determine ways to delocalize electron density and positive charge while maintaining the molecular skeleton. 2. **Draw Resonance Arrows:** - Use double-headed arrows to indicate the movement of electrons. 3. **Key Considerations:** - Ensure all resonance structures maintain charge conservation. - The oxygen can participate in resonance due to its lone pair and potential for delocalization. This exercise helps in understanding the concept of resonance, which is crucial for analyzing the stability and reactivity of organic compounds.
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