Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 23, Problem 63AP

Given that Δ G ( Fe 2 O 3 ) f o = 741.0  kJ/mol and that Δ G ( Al 2 O 3 ) f o = 1576.4  kJ/mol , calculate Δ G ° for the following reactions at: 25 ° C

(a)

2 Fe 2 O 3 ( s ) 4 Fe ( s ) + 3 O 2 ( g )

(b)

2 Al 2 O 3 ( s ) 4 Al ( s ) + 3 O 2 ( g )

Expert Solution & Answer
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Interpretation Introduction

Interpretation:

The ΔG value for the given reactions is to be determined with given ΔG value for Fe2O3 and Al2O3.

Concept Introduction:

The ΔG of areaction is calculated by the expression as

ΔG=ΔGf(products)ΔGf(reactant).

Here, ΔG is the change in standard Gibbs free energy, ΔGf(products) is the sum of standard Gibbs free energy of products, and ΔGf(reactant) is the sum of standard Gibbs free energy of reactants.

Answer to Problem 63AP

Solution:

The ΔG valuefor the reaction is equal to 1482 kJ/mol.

The ΔG value for the reaction is equal to 3152.8 kJ/mol.

Explanation of Solution

a) 2Fe2O3(s)4Fe(s)+3O2(g).

The value of ΔGf(Fe2O3) is 741.00 kJ/mol.

Thevalue of ΔG for the given reaction is calculated by using the relation given below:

ΔG=4ΔGf(Fe)+3ΔGf(O2)2ΔGf(Fe2O3).

Here, ΔG is the change in standard Gibbs free energy, ΔGf(Fe) is the change in standard Gibbs free energy of Fe, ΔGf(O2) is the change in standard Gibbs free energy of O2 and ΔGf(Fe2O3) is the change in standard Gibbs free energy of Fe2O3.

The value of change in standard Gibbs free energy for atoms in their standard state is zero. In the reaction, Fe and O2 are present in their standard state. Thus, the value of ΔGf(O2) and ΔGf(Fe) is zero.

Substitute 0 for ΔGf(O2), 0 for ΔGf(Fe), and 741.00 kJ/mol for ΔGf(Fe2O3) in the equation as:

ΔG=4ΔGf(Fe)+3ΔGf(O2)2ΔGf(Fe2O3)=4(0)+3(0)2(741.0 kJ/mol)=1482 kJ/mol.

b) 2Al2O3(s)4Al(s)+3O2(g)

The value of ΔGf(Al2O3) is -1576.4kJ/mol.

The value of ΔG for the given reaction is calculated by using the relation given below:

ΔG=4ΔGf(Al)+3ΔGf(O2)2ΔGf(Al2O3).

Here, ΔG is the change in standard Gibbs free energy, ΔGf(Al) is the change in standard Gibbs free energy of Al, ΔGf(O2) is the change in standard Gibbs free energy of O2, and ΔGf(Al2O3) is the change in standard Gibbs free energy of Al2O3.

The value of change in standard Gibbs free energy for atoms in their standard state is zero. In the reaction, Al and O2 are present in their standard state. Thus, the value of ΔGf(O2) and ΔGf(Al) is zero.

Substitute 0 for ΔGf(O2), 0 for ΔGf(Al) and -1576.4kJ/mol for ΔGf(Al2O3) in the equation as:

ΔG=4ΔGf(Al)+3ΔGf(O2)2ΔGf(Al2O3)=4(0)+3(0)2(-1576.4 kJ/mol)=3152.8 kJ/mol.

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Chapter 23 Solutions

Chemistry

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