
Concept explainers
(a)
Interpretation:
The product for the reaction between
Concept introduction:
The reaction in which one form of an ester is converted to another form by changing the carbon skeleton of the alkoxide part (OR) of the ester is called transesterification. The transesterification reaction is a nucleophilic addition-elimination reaction. In the first step, the nucleophile adds the electro-poor carbonyl carbon of the ester, which forces the bonding pair of carbonyl p bond onto the O atom. A negative charge is produced on that O, and a tetrahedral intermediate is formed. In the second step, tetrahedral intermediate undergoes nucleophilic elimination to form the transesterification product. The transesterification is a reversible reaction. The base hydrolysis of an ester to produce corresponding

Answer to Problem 20.28P
The product for the reaction between
The complete detailed, mechanism for the given reaction is
Explanation of Solution
The given reaction is
So this is a saponification reaction of
In the second step, nucleophilic elimination takes place to produce an alkoxide ion and corresponding carboxylic acid. These steps are reversible.
In the third step, irreversible deprotonation of the carboxylic acid takes place and the carboxylate ion is formed. Finally, on acid workup step, protonation of the carboxylate ion takes place to form the carboxylic acid.
Thus, the products of the given reaction are
The product is predicted by using transesterification concept and the detailed mechanism is drawn.
(b)
Interpretation:
The product for the reaction between
Concept introduction:
The reaction in which one form of an ester is converted to another form by changing the carbon skeleton of the alkoxide part (OR) of the ester is called transesterification. The transesterification reaction is a nucleophilic addition-elimination reaction. In the first step, the nucleophile adds the electro-poor carbonyl carbon of the ester, which forces the bonding pair of carbonyl p bond onto the O atom. A negative charge is produced on that O, and a tetrahedral intermediate is formed. In the second step, tetrahedral intermediate undergoes nucleophilic elimination to form the transesterification product. The transesterification is a reversible reaction. The base hydrolysis of an ester to produce corresponding carboxylic acid and alcohol is called a saponification reaction.

Answer to Problem 20.28P
The product for the reaction between
The complete detailed, mechanism for the given reaction is
Explanation of Solution
The given reaction is
This is a transesterification reaction of
In the second step, the tetrahedral intermediate undergoes nucleophilic elimination to form the transesterification product.
Thus, the product of the given reaction is
The product is predicted by using transesterification concept and the detailed mechanism is drawn.
(c)
Interpretation:
The product for the reaction between
Concept introduction:
The reaction in which one form of an ester is converted to another form by changing the carbon skeleton of the alkoxide part (OR) of the ester is called transesterification. The transesterification reaction is a nucleophilic addition-elimination reaction. In the first step, the nucleophile adds the electro-poor carbonyl carbon of the ester, which forces the bonding pair of carbonyl p bond onto the O atom. A negative charge is produced on that O, and a tetrahedral intermediate is formed. In the second step, tetrahedral intermediate undergoes nucleophilic elimination to form the transesterification product. The transesterification is a reversible reaction. The base hydrolysis of an ester to produce corresponding carboxylic acid and alcohol is called a saponification reaction.

Answer to Problem 20.28P
The product for the reaction between
The complete detailed, mechanism for the given reaction is
Explanation of Solution
The given reaction is
This is a transesterification reaction of the
In the second step, tetrahedral intermediate undergoes nucleophilic elimination to form the transesterification product.
Since phenoxide ion (
Thus, the product of the given reaction is
The product is predicted by using transesterification concept and the detailed mechanism is drawn.
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Chapter 20 Solutions
Organic Chemistry: Principles And Mechanisms (second Edition)
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- Identify the amino acids by name. Illustrate a titration curve for this tetrapeptide indicating the pKa's for each ionizable groups and identify the pI for this tetrapeptide. please helparrow_forward↓ ina xSign x Sign X labs X Intro X Cop Xa chat X My Cx Grac X Laur x Laur xash learning.com/ihub/assessment/f188d950-dd73-11e0-9572-0800200c9a66/d591b3f2-d5f7-4983-843c-0d00c1c0340b/f2b47861-07c4-4d1b-a1ee-e7db2 +949 pts /3400 K Question 16 of 34 > © Macmillan Learning Draw the major E2 reaction product formed when cis-1-chloro-2-ethylcyclohexane (shown) reacts with hydroxide ion in DMSO. H CH2CH3 H H HO- H H H Cl DMSO H H C Select Draw Templates More C H 0 2 Erasearrow_forwardA common buffer for stabilizing antibodies is 100 mM Histidine at pH 7.0. Describe the preparation of this buffer beginning with L-Histidine monohydrochloride monohydrate and 1 M NaOH. Be certain to show the buffering reaction that includes the conjugate acid and base.arrow_forward
