EBK ORGANIC CHEMISTRY
EBK ORGANIC CHEMISTRY
6th Edition
ISBN: 8220103151757
Author: LOUDON
Publisher: MAC HIGHER
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Chapter 3, Problem 3.18P
Interpretation Introduction

(a)

Interpretation:

The equilibrium constant for the reaction is to be calculated.

Concept introduction:

Dissociation constant, Ka, is used to measure the strength of a Brønsted acid. There is an inverse relationship between the acidity of a Brønsted acid and its pKa value. The relation between Keq with pKa is given by an expression shown below.

Keq=10pKBH/pKAH

Where,

KAH is dissociation constant for an acid, AH.

KBH is dissociation constant for conjugate acid, BH.

Interpretation Introduction

(b)

Interpretation:

The equilibrium constant for the reaction is to be predicted.

Concept introduction:

Dissociation constant Ka is used to measure the strength of a Brønsted acid. There is an inverse relationship between the acidity of a Brønsted acid and its pKa value. The relation between Keq with pKa is given by an expression shown below.

Keq=10pKBH/pKAH

Where,

KAH is dissociation constant for an acid, AH.

KBH is dissociation constant for conjugate acid, BH.

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Part II. two unbranched ketone have molecular formulla (C8H100). El-ms showed that both of them have a molecular ion peak at m/2 =128. However ketone (A) has a fragment peak at m/2 = 99 and 72 while ketone (B) snowed a fragment peak at m/2 = 113 and 58. 9) Propose the most plausible structures for both ketones b) Explain how you arrived at your conclusion by drawing the Structures of the distinguishing fragments for each ketone, including their fragmentation mechanisms.
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