Physical Chemistry
Physical Chemistry
3rd Edition
ISBN: 9780321812001
Author: ENGEL, Thomas/ Reid
Publisher: Pearson College Div
Question
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Chapter 6, Problem 6.9NP

(a)

Interpretation Introduction

Interpretation: An expression needs to be derived for the entropy of mixing as a function of ξ

Concept Introduction:

The change in entropy of mixing can be represented as follows:

  ΔSmixing=nRixilnxi

Here, n is total number of moles, R is Universal gas constant, xi is the mole fraction of the gas i in the mixture.

(b)

Interpretation Introduction

Interpretation: The value of ξ needs to be determined graphically as the function of entropy of mixing.

Concept Introduction: The change in entropy of mixing can be represented as follows:

  ΔSmixing=nRixilnxi

Here, n is total number of moles, R is Universal gas constant, xi is the mole fraction of the gas i in the mixture.

(c)

Interpretation Introduction

Interpretation: An expression for Gpure as a function of ξ needs to be determined.

Concept Introdiction: For the mixture of gases, the Gpure at equilibrium can be represneted as follows:

  Gpure=nAΔGfo(A,g)+nBΔGfo(B,g)

Here, nA and nB are number of moles of gases A and B respectively at equilibrium.

(d)

Interpretation Introduction

Interpretation: The plot of Gmixture which is Gpure+ΔGmixing as a function of ξ needs to be plotted. The value of ξ needs to be calculated for minimum value of Gmixture . The calculated value needs to be compared with the value of ξ in part (b).

Concept Introduction: The change in Gibbs free energy of mixing can be calculated as follows:

  ΔGmixing=nRTixilnxi

Here, n is total number of moles of mixture at equilibrium, R is Universal gas constant, T is temperature and xi is mole fraction of i gas at equilibrium.

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Chapter 6 Solutions

Physical Chemistry

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