
(a)
Interpretation:
The product obtained in the reaction of
Concept introduction:

Answer to Problem 23.45AP
The product
Explanation of Solution
When
Figure 1
The product obtained in the reaction of
(b)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water. The replacement of hydrogen atom attached to a carbon atom of electron-rich benzene ring by an incoming electrophile is known as electrophilic aromatic substitution reaction.

Answer to Problem 23.45AP
The product obtained in the reaction of
Explanation of Solution
When
Figure 2
The product obtained in the reaction of
(c)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water.

Answer to Problem 23.45AP
The product
Explanation of Solution
When
Figure 3
The product obtained in the reaction of
(d)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water.

Answer to Problem 23.45AP
The product
Explanation of Solution
When
Figure 4
The product obtained in the reaction of
(e)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water.

Answer to Problem 23.45AP
The product
Explanation of Solution
The reagents,
Figure 5
The product obtained in the reaction of
(f)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Hofmann elimination reaction occurs as an anti-elimination reaction. In this reaction, the starting material is quaternary ammonium hydroxide. When quaternary ammonium hydroxide is heated,

Answer to Problem 23.45AP
The product
Explanation of Solution
Hofmann elimination reaction occurs as an anti-elimination reaction. In this reaction, the starting material is quaternary ammonium hydroxide. In the given case, when
Figure 6
The product obtained in the reaction of
(g)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water. Reductive amination reaction is the conversion of the carbonyl group to the amine or it converts one amine to newer amine.

Answer to Problem 23.45AP
The product,
Explanation of Solution
Reductive amination reaction is the conversion of the carbonyl group to the amine or it converts one amine to new amine. In the given case, when
Figure 7
The product obtained in the reaction of
(h)
Interpretation:
The product obtained in the reaction of
Concept introduction:
Amines are the organic compounds that are formed by replacement of hydrogen from ammonia with a substituent. It may be alkyl or aryl group. Amines are basic in nature because the nitrogen can donate its lone pairs and also the ability of the nitrogen to accept the proton in water.

Answer to Problem 23.45AP
The product
Explanation of Solution
When
Figure 8
The product obtained in the reaction of
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Chapter 23 Solutions
EBK ORGANIC CHEMISTRY
- Draw the products of the stronger acid protonating the other reactant. OH KEq CH H3C H3C `CH3 Product acid Product basearrow_forward2. Draw the missing structure(s) in each of the following reactions. The missing structure(s) can be a starting material or the major reaction product(s). Ph H-I CH2Cl2arrow_forward3 attempts left Check my work Draw the products formed in the following oxidative cleavage. [1] 03 [2] H₂O draw structure ... lower mass product draw structure ... higher mass productarrow_forward
- 2. Draw the missing structure(s) in each of the following reactions. The missing structure(s) can be a starting material or the major reaction product(s). H-Br CH2Cl2arrow_forwardWrite the aldol condensation mechanism and product for benzaldehyde + cyclohexanone in a base. Then trans-cinnamaldehyde + acetone in base. Then, trans-cinnamaldehyde + cyclohexanone in a base.arrow_forwardClick the "draw structure" button to launch the drawing utility. Draw the structure of the alkene that yields the following set of oxidative cleavage products? draw structure ...arrow_forward
- Identify whether the carbocation or alkyl halide is methyl, primary, secondary, or tertiary.arrow_forwardDraw the products formed when the following alkene is treated with 03 followed by Zn, H₂O. Click the "draw structure" button to launch the drawing utility. draw structure ...arrow_forwardCalculate the pH of 0.600 M solution of CH5N (Kb=4.37 x10-4) Hint: use assumption and check it!arrow_forward
- Organic ChemistryChemistryISBN:9781305580350Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. FootePublisher:Cengage LearningIntroduction to General, Organic and BiochemistryChemistryISBN:9781285869759Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar TorresPublisher:Cengage Learning


