Chemistry: Atoms First
Chemistry: Atoms First
3rd Edition
ISBN: 9781259638138
Author: Julia Burdge, Jason Overby Professor
Publisher: McGraw-Hill Education
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Chapter 14, Problem 14.15QP

Using the data in Appendix 2, calculate the standard entropy changes for the following reactions at 25°C.

(a) H2(g) + CuO(s) → Cu(s) + H2O(g)

(b) 2A1(s) + 3ZnO(s) → Al2O3(s) + 3Zn(s)

(c) CH4(g) + 2O2(g) → CO2(g) + 2H2O(l)

(a)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The standard entropy change (ΔS°reaction) in the given set of reactions has to be calculated.

Concept introduction: Entropy is the measure of randomness in the system.   Standard entropy change in a reaction is the difference in entropy of the products and reactants.  (ΔS°reaction)   can be calculated by the following equation.

(ΔS°reaction) = S°Products- S°reactants

Where

S°reactants is the standard entropy of the reactants

S°Products is the standard entropy of the products

Answer to Problem 14.15QP

The ΔS°reaction for the reaction (a) = 47.5 JK-1mol-1

Explanation of Solution

To record the given data

Given,

S°(Cu)=33.3 JK-1mol-1S°[H2O(g)]=188.7 JK-1mol-1S°(H2) =131.0J K-1mol-1S°(CuO)=43.5 JK-1mol-1

 To calculate ΔS°reaction

The ΔS°reaction is the difference in entropy of the reactants and products.  Which is calculated by plugging in the values of standard entropy of the products and reactants  the given equation.

(ΔS°reaction) = S°produdcts- S°reacttants

= S°(Cu)+S°[H2O(g)][S°(H2)+S°(CuO)]=(1)(33.3 JK-1mol-1)+(1)(188.7 JK-1mol-1)-[(1)(131.0J K-1mol-1)+(1)(43.5 JK-1mol-1)]=47.5JK-1mol-1

(b)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The standard entropy change (ΔS°reaction) in the given set of reactions has to be calculated.

Concept introduction: Entropy is the measure of randomness in the system.   Standard entropy change in a reaction is the difference in entropy of the products and reactants.  (ΔS°reaction)   can be calculated by the following equation.

(ΔS°reaction) = S°Products- S°reactants

Where

S°reactants is the standard entropy of the reactants

S°Products is the standard entropy of the products

Answer to Problem 14.15QP

The ΔS°reaction for the reaction (b) = -12.5 JK-1mol-1

Explanation of Solution

To record the given data

Given,

S°(Al2O3)=50.99 JK-1mol-1S°(Zn)=41.6JK-1mol-1S°(Al) = 28.3 JK-1mol-1S°(ZnO)=43.9 JK-1mol-1

To calculate ΔS°reaction

The ΔS°reaction is the difference in entropy of the reactants and products.  Which is calculated by plugging in the values of standard entropy of the reactants and products  the given equation.

(ΔS°reaction) = S°produdcts- S°reacttants

=  [S°(Al2O3)+3S°(Zn)]-[2S°(Al)+3S°(ZnO)]= (1)(50.99 JK-1mol-1)+(3)(41.6JK-1mol-1)-[(2)(28.3 JK-1mol-1)+(3)(43.9 JK-1mol-1)]= -12.5 JK-1mol-1

(c)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The standard entropy change (ΔS°reaction) in the given set of reactions has to be calculated.

Concept introduction: Entropy is the measure of randomness in the system.   Standard entropy change in a reaction is the difference in entropy of the products and reactants.  (ΔS°reaction)   can be calculated by the following equation.

(ΔS°reaction) = S°Products- S°reactants

Where

S°reactants is the standard entropy of the reactants

S°Products is the standard entropy of the products

Answer to Problem 14.15QP

The ΔS°reaction for the reaction (c) = - 242.8 JK-1mol-1

Explanation of Solution

To record the given data

Given,

S°(CO2)=213.6 JK-1mol-1S°(H2O(l)) = 69.9 JK-1mol-1S°(CH4)=186.2 JK-1mol-1S°(O2)=205.0 JK-1mol-1

To calculate ΔS°reaction

The ΔS°reaction is the difference in entropy of the reactants and products.  Which is calculated by plugging in the values of standard entropy of the reactants and products  the given equation.

(ΔS°reaction) = S°produdcts- S°reactants

= S°(CO2)+2S°(H2O(l)) - [S°(CH4)+2S°(O2)]=(1)(213.6 JK-1mol-1)+(2)(69.9 JK-1mol-1)-[(1)(186.2 JK-1mol-1)+(2)(205.0 JK-1mol-1)]=242.8JK-1mol-1

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Chapter 14 Solutions

Chemistry: Atoms First

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