Chemistry: Principles and Practice
Chemistry: Principles and Practice
3rd Edition
ISBN: 9780534420123
Author: Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher: Cengage Learning
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Chapter 17, Problem 17.53QE

(a)

Interpretation Introduction

Interpretation:

The standard entropy change has to be calculated.

  CO(g)+2H2(g)CH3OH(l)

(a)

Expert Solution
Check Mark

Answer to Problem 17.53QE

The value of ΔSo for the process is 332kJ/mol.

Explanation of Solution

The balanced chemical equation as follows,

  CO(g)+2H2(g)CH3OH(l)

The value of ΔSo is calculated as follows,

  CO(g)+2H2(g)CH3OH(l)ΔHfo(J/mol. K)197.56130.57126.8

  ΔS=(ΔSproducts)(ΔS reactants)=(1×126.8J/mol.K)(1×197.56J/mol.K)-(2×130.57J/mol.K)=(126.8J/mol.K)(197.56J/mol.K)-(261.14J/mol.K)=332kJ/mol.

Therefore, value of ΔSo for the process is 332kJ/mol.

(b)

Interpretation Introduction

Interpretation:

The standard entropy change has to be calculated.

  3H2(g)+N2(g)2NH3(g)

(b)

Expert Solution
Check Mark

Answer to Problem 17.53QE

The value of ΔSo for the process is 198.53kJ/mol.

Explanation of Solution

The balanced chemical equation as follows,

  3H2(g)+N2(g)2NH3(g)

The value of ΔHf is calculated as follows,

  3H2(g)+N2(g)2NH3(g)ΔHfo(J/mol.K)130.57191.50192.34

  ΔS=(ΔSproducts)(ΔS reactants)=(2×192.34J/mol.K)(3×130.57J/mol.K)-(1×191.50J/mol.K)=(384.68J/mol.K)(391.71J/mol.K)-(191.50J/mol.K)=198.53kJ/mol.

Therefore, value of ΔSo for the process is 198.53kJ/mol.

(c)

Interpretation Introduction

Interpretation:

The standard entropy change has to be calculated.

  2C2H2(g)+5O2(g)4CO2(g)+2H2O(l)

(c)

Expert Solution
Check Mark

Answer to Problem 17.53QE

The value of ΔSo for the process is 432.47kJ/mol.

Explanation of Solution

The balanced chemical equation as follows,

  2C2H2(g)+5O2(g)4CO2(g)+2H2O(l)

The value of ΔHf is calculated as follows,

  2C2H2(g)+5O2(g)4CO2(g)+2H2O(l)ΔHfo(J/mol.K)200.83205.03213.6369.91

  ΔS=(ΔSproducts)(ΔS reactants)=(2×69.91J/mol.K)+(4×313.63J/mol.K)-(2×200.83J/mol.K)(5×205.03J/mol.K)=(139.82J/mol.K)+(854.52J/mol.K)-(401.66J/mol.K)(1025.15J/mol.K)=432.47kJ/mol.

Therefore, value of ΔSo for the process is 432.47kJ/mol.

(d)

Interpretation Introduction

Interpretation:

The standard entropy change has to be calculated.

  2C(s)+O2(g)2CO(g)

(d)

Expert Solution
Check Mark

Answer to Problem 17.53QE

The value of ΔSo for the process is 178.61kJ/mol.

Explanation of Solution

The balanced chemical equation as follows,

  2C(s)+O2(g)2CO(g)

The value of ΔHf is calculated as follows,

  2C(s)+O2(g)2CO(g)ΔHfo(J/mol.K)5.74205.03197.56

  ΔS=(ΔSproducts)(ΔS reactants)=(2×197.56J/mol.K)(2×5.74J/mol.K)(1×205.03J/mol.K)=(395.12J/mol.K)(11.48J/mol.K)(205.03J/mol.K)=178.61kJ/mol.

Therefore, value of ΔSo for the process is 178.61kJ/mol.

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Chapter 17 Solutions

Chemistry: Principles and Practice

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