Organic Chemistry
Organic Chemistry
2nd Edition
ISBN: 9781118452288
Author: David R. Klein
Publisher: WILEY
Question
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Chapter 7.9, Problem 33PTS

(a)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  1

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(c)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  2

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(d)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  3

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(e)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  4

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(f)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  5

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(g)

Interpretation Introduction

Interpretation:

The reagents for the given set of reactions should be identified.

Concept Introduction

SN2 Reaction: It is a nucleophilic substitution reaction in which the rate determining step depends on both of the molecules involved. The bond making and the bond breaking process happens simultaneously in this reaction.

Structure of the substrate plays major role in the reactivity of SN2 reaction. If the substrate is more substituted then the rate of the reaction will becomes slower. Since the mechanism of SN2 reaction proceeds through backside attack on the substrate, it depends on steric factor that if more groups attached near the leaving group the reactivity becomes slower. The SN2 reactivity increases in molecule with better leaving group. The reactivity increases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  6

Leaving group: it is a fragment that leaves substrate with a pair of electrons via heterolytic bond cleavage.

Nucleophile: donates pair of electrons to positively charged substrate resulting in the formation of chemical bond.

(b)

Interpretation Introduction

Concept Introduction:

SN1 Reaction: it is a nucleophilic substitution reaction in which the rate determining step depends on one reactant. First step is the formation of more stable carbocation which is followed by the attack of nucleophile. Formation of more stable carbocation and the leaving group present in the substrate plays very important role in the reactivity of SN1 reaction.

Carbocation: it is carbon ion that bears a positive charge on it.

The reactivity of SN1 decreases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  7

(h)

Interpretation Introduction

Concept Introduction:

SN1 Reaction: it is a nucleophilic substitution reaction in which the rate determining step depends on one reactant. First step is the formation of more stable carbocation which is followed by the attack of nucleophile. Formation of more stable carbocation and the leaving group present in the substrate plays very important role in the reactivity of SN1 reaction.

Carbocation: it is carbon ion that bears a positive charge on it.

The reactivity of SN1 decreases in the order as follows,

Organic Chemistry, Chapter 7.9, Problem 33PTS , additional homework tip  8

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Organic Chemistry

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