3. Consider the following reaction and answer the questions that follow: HNO3 2 1 NO2 NH2 N H N -H H₂ 4 NO2 NH2 4-ADPA 3.1 The following masses of reagents are used in the synthesis of 4-ADPA: Benzene (C6H6): 10.02 g HNO3: 8.66 g Aniline (C6H7N): 11.98 g H₂: 5.23 g Set up an experimental atom economy table, and calculate the percentage experimental atom economy for the reaction. [15]
3. Consider the following reaction and answer the questions that follow: HNO3 2 1 NO2 NH2 N H N -H H₂ 4 NO2 NH2 4-ADPA 3.1 The following masses of reagents are used in the synthesis of 4-ADPA: Benzene (C6H6): 10.02 g HNO3: 8.66 g Aniline (C6H7N): 11.98 g H₂: 5.23 g Set up an experimental atom economy table, and calculate the percentage experimental atom economy for the reaction. [15]
Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter9: Nucleophilic Substitution And Β-elimination
Section: Chapter Questions
Problem 9.60P: Another important pattern in organic synthesis is the construction of CC bonds. Using your reaction...
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Question
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![3.
Consider the following reaction and answer the questions that follow:
HNO3
2
1
NO2
NH2
N H
N
-H
H₂
4
NO2
NH2
4-ADPA
3.1
The following masses of reagents are used in the synthesis of 4-ADPA:
Benzene (C6H6): 10.02 g
HNO3: 8.66 g
Aniline (C6H7N): 11.98 g
H₂: 5.23 g
Set up an experimental atom economy table, and calculate the percentage experimental
atom economy for the reaction.
[15]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2a3e2263-7bee-47bd-a22c-cf8137e998d8%2F0df4e7fa-cd5f-48c2-a94c-a8e96da9209c%2F4ill9p_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3.
Consider the following reaction and answer the questions that follow:
HNO3
2
1
NO2
NH2
N H
N
-H
H₂
4
NO2
NH2
4-ADPA
3.1
The following masses of reagents are used in the synthesis of 4-ADPA:
Benzene (C6H6): 10.02 g
HNO3: 8.66 g
Aniline (C6H7N): 11.98 g
H₂: 5.23 g
Set up an experimental atom economy table, and calculate the percentage experimental
atom economy for the reaction.
[15]
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