Н20: Br BV :ö-н ---- Br H :ö-н H I еля H below Дон OH 19H+

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
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Question 5:**

Draw a reaction energy diagram for 2a assuming step 2 is the rate determining step.

**Explanation:**

In this task, you need to develop a reaction energy diagram. Assume that step 2 in the reaction mechanism is the rate-determining step, meaning it has the highest energy barrier and therefore controls the overall reaction rate. Consider factors such as activation energy, transition states, and intermediate species in your diagram.
Transcribed Image Text:**Question 5:** Draw a reaction energy diagram for 2a assuming step 2 is the rate determining step. **Explanation:** In this task, you need to develop a reaction energy diagram. Assume that step 2 in the reaction mechanism is the rate-determining step, meaning it has the highest energy barrier and therefore controls the overall reaction rate. Consider factors such as activation energy, transition states, and intermediate species in your diagram.
The image showcases a chemical mechanism for a reaction involving a carbonyl compound with a bromine substituent and a water molecule:

1. **First Structure:**
   - A carbonyl group (C=O) is connected to a bromine atom (Br). 
   - Water (H₂O) is shown approaching the carbonyl carbon.

2. **Second Structure:**
   - The carbonyl oxygen forms a bond with a hydrogen from water, creating a positively charged oxygen ion adjacent to a bromine.
   - The water is transformed into a hydroxide ion (OH⁻).

3. **Third Structure:**
   - The carbon now has the OH group attached, and Br is still connected. The positive charge is on the carbon.

4. **Fourth Structure:**
   - The bromine is removed, and water is rearranged. The intermediate structure has a positively charged oxygen ion.

5. **Final Structure:**
   - The final product is a carboxylic acid (C=O with OH attached).
   - HBr is released as a byproduct.

This mechanism illustrates the nucleophilic attack by water on the carbonyl carbon, followed by rearrangements and elimination to form the carboxylic acid.
Transcribed Image Text:The image showcases a chemical mechanism for a reaction involving a carbonyl compound with a bromine substituent and a water molecule: 1. **First Structure:** - A carbonyl group (C=O) is connected to a bromine atom (Br). - Water (H₂O) is shown approaching the carbonyl carbon. 2. **Second Structure:** - The carbonyl oxygen forms a bond with a hydrogen from water, creating a positively charged oxygen ion adjacent to a bromine. - The water is transformed into a hydroxide ion (OH⁻). 3. **Third Structure:** - The carbon now has the OH group attached, and Br is still connected. The positive charge is on the carbon. 4. **Fourth Structure:** - The bromine is removed, and water is rearranged. The intermediate structure has a positively charged oxygen ion. 5. **Final Structure:** - The final product is a carboxylic acid (C=O with OH attached). - HBr is released as a byproduct. This mechanism illustrates the nucleophilic attack by water on the carbonyl carbon, followed by rearrangements and elimination to form the carboxylic acid.
Expert Solution
Step 1: State Steady state approximation

According to Steady state approximation, slowest step is the rate determining step because this step has higher activation energy.

This slow step determines rate law equation.

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