Quantitative Chemical Analysis
Quantitative Chemical Analysis
9th Edition
ISBN: 9781464135385
Author: Daniel C. Harris
Publisher: W. H. Freeman
Question
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Chapter 23, Problem 23.CE

(a)

Interpretation Introduction

Interpretation:

The retention factor for octane and nonane has to be calculated.

Concept introduction:

Retention factor:

The retention factor (k) is given by

k=tr-tmtmWhere,k-retentionfactortr-timerequiredtoelutethepeaktm-timerequiredformobilephasetopassthroughthecolumn.

(b)

Interpretation Introduction

Interpretation:

The ratio between time octane spends in stationary phase and total time octane spends on column has to be calculated.

(c)

Interpretation Introduction

Interpretation:

The relative retention for octane and nonane has to be calculated.

Concept introduction:

Relative retention:

The ratio of the adjusted retention time of two components is given by relative retention α

α=tr'2tr'1Where,α-relativeretention(alsocalledseparationfactor)tr'2-adjustedretentiontimeofcomponent2tr'1-adjustedretentiontimeofcomponent1Theseparationbetweenthetwocomponentwillbehigherwhentr'2>tr'1,soα>1

(d)

Interpretation Introduction

Interpretation:

The value of partition coefficient for octane calculated.

Concept introduction:

Partition coefficient:

Partition of a solute is depends on “like dissolves like” concept.  This means the solubility of solute is more in a solvent whose polarity is similar to that of the solute.

The partition coefficient of solute (S) is given by

Solute(inphase1)Solute(inphase2)

K=AS2AS1[S]2[S]1where,K-partitioncoefficientAS1-Activityofsoluteinphase1AS2-Activityofsoluteinphase2[S]1-Concentrationofsoluteinphase1[S]2-Concentrationofsoluteinphase2

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