Organic Chemistry
Organic Chemistry
6th Edition
ISBN: 9781936221349
Author: Marc Loudon, Jim Parise
Publisher: W. H. Freeman
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Chapter 19, Problem 19.12P
Interpretation Introduction

(a)

Interpretation:

SN1 mechanism for the solvolysis of CH3OCH2Cl in ethanol with appropriate resonance structures for the carbocation intermediate is to be drawn.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which one nucleophile is substituted by another nucleophile. These reactions depend upon the nucleophilicity and concentration of the nucleophile. It is of two types, SN1 and SN2.

The SN2 reaction is a nucleophilic substitution bimolecular single-step reaction in which the addition of nucleophile and removal of leaving group takes place simultaneously.

The SN1 reaction is a nucleophilic substitution reaction in which the substitution of nucleophile takes place. This reaction takes place in two steps. This generates a carbocation intermediate in the reaction.

Interpretation Introduction

(b)

Interpretation:

The reason as to why the alkyl halide in part (a) undergoes solvolysis much more rapidly as compared to 1 chlorobutane is to be stated.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which one nucleophile is substituted by another nucleophile. These reactions depend upon the nucleophilicity and concentration of the nucleophile. It is of two types, SN1 and SN2.

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Please give the main substitution product for each of the following reactions, and indicate the dominant mechanism:      (a)     1-bromopropane   +   NaOCH3   →      (b)     3-bromo-3-methylpentane   +   NaOC2H5   →
Reaction of this bicycloalkene with bromine in carbon tetrachloride gives a trans dibro- mide. In both (a) and (b), the bromine atoms are trans to each other. However, only one of these products is formed. CH3 CH3 CH3 Br Br CH,Cl, + Br2 or Br Br (a) (b) Which trans dibromide is formed? How do you account for the fact that it is formed to the exclusion of the other trans dibromide?
(a) What happens when CH3—O—CH<sub3 is heated with HI?(b) Explain mechanism for hydration of acid catalyzed ethene :CH2 = CH2 + HzO CH3—CH,—OH

Chapter 19 Solutions

Organic Chemistry

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