Draw the product of the reaction shown below at physiological pH (pH = 7.4). Ignore inorganic byproducts. CF3CO2H O

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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Title: Reaction Mechanism at Physiological pH

**Objective:**
Understand how to predict the product of a chemical reaction at physiological pH (pH = 7.4), ignoring inorganic byproducts.

**Instructions:**

1. **Reaction Question:**
   - Draw the product of the reaction shown at physiological pH (pH = 7.4).

2. **Given Chemical Structure:**
   - The structure provided is a compound with multiple functional groups, including amides and esters. Pay attention to the stereochemistry indicated by the solid wedges.

3. **Reactant Details:**
   - The reactant involved in the reaction is specified as CF₃CO₂H, which is trifluoroacetic acid.

4. **Diagram Composition:**
   - The diagram above displays an organic compound with designated wedge bonds indicating chiral centers.
   - You are required to draw the resulting product of the reaction in the provided drawing space below the arrow.

5. **Mechanism Notes:**
   - Consider how trifluoroacetic acid (CF₃CO₂H) might interact with the given structure.
   - Apply knowledge of acid-base reactions, hydrolysis, and physiological conditions (pH = 7.4) to predict the chemical transformation.
   - Remember to focus on alterations to functional groups and any potential stereochemical changes.

**Conclusion:**
To successfully determine the reaction product, combine your understanding of organic chemistry principles with attention to molecular detail under specified pH conditions.
Transcribed Image Text:Title: Reaction Mechanism at Physiological pH **Objective:** Understand how to predict the product of a chemical reaction at physiological pH (pH = 7.4), ignoring inorganic byproducts. **Instructions:** 1. **Reaction Question:** - Draw the product of the reaction shown at physiological pH (pH = 7.4). 2. **Given Chemical Structure:** - The structure provided is a compound with multiple functional groups, including amides and esters. Pay attention to the stereochemistry indicated by the solid wedges. 3. **Reactant Details:** - The reactant involved in the reaction is specified as CF₃CO₂H, which is trifluoroacetic acid. 4. **Diagram Composition:** - The diagram above displays an organic compound with designated wedge bonds indicating chiral centers. - You are required to draw the resulting product of the reaction in the provided drawing space below the arrow. 5. **Mechanism Notes:** - Consider how trifluoroacetic acid (CF₃CO₂H) might interact with the given structure. - Apply knowledge of acid-base reactions, hydrolysis, and physiological conditions (pH = 7.4) to predict the chemical transformation. - Remember to focus on alterations to functional groups and any potential stereochemical changes. **Conclusion:** To successfully determine the reaction product, combine your understanding of organic chemistry principles with attention to molecular detail under specified pH conditions.
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