Quantitative Chemical Analysis 9e And Sapling Advanced Single Course For Analytical Chemistry (access Card)
Quantitative Chemical Analysis 9e And Sapling Advanced Single Course For Analytical Chemistry (access Card)
9th Edition
ISBN: 9781319090241
Author: Daniel C. Harris, Sapling Learning
Publisher: W. H. Freeman
Question
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Chapter 25, Problem 25.44P

a)

Interpretation Introduction

Interpretation:

The gradient time tG for 15×0.46cm column containing 3μm particles with flow rate of 1.0ml/min has to be calculated.

Concept Introduction:

Average retention factor:

For gradient/isocratic elution, the average retention factor k* for each solute is calculated from the equation,

k*=tGFΔΦVmS

Where tG = gradient time (in min)

F=rate of flow (ml/min)

ΔΦ = change in composition of solvent during the gradient

Vm = Volume of mobile phase in column (mL)

S = slope in the linear-solvent strength model

b)

Interpretation Introduction

Interpretation:

k* for optimized separation, gradient time and the flow rate of volume and the amount of sample load has to be calculated.

Concept Introduction:

Average retention factor:

For gradient/isocratic elution, the average retention factor k* for each solute is calculated from the equation,

k*=tGFΔΦVmS

Where tG = gradient time (in min)

F=rate of flow (ml/min)

ΔΦ = change in composition of solvent during the gradient

Vm = Volume of mobile phase in column (mL)

S = slope in the linear-solvent strength model

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