Chemistry: An Atoms-Focused Approach
Chemistry: An Atoms-Focused Approach
14th Edition
ISBN: 9780393912340
Author: Thomas R. Gilbert, Rein V. Kirss, Natalie Foster
Publisher: W. W. Norton & Company
Question
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Chapter 14, Problem 14.123QA
Interpretation Introduction

To find:

KP for reaction 4 CH4(g)+ S8(S) 4 CS2(g)+ 8H2(g) at 250C and 5000C

Expert Solution & Answer
Check Mark

Answer to Problem 14.123QA

Solution:

a) KP for reaction 4 CH4(g)+ S8(S) 4 CS2(g)+ 8H2(g) at 250C is 5.44 ×10-82.

b) KP for reaction 4 CH4(g)+ S8(S) 4 CS2(g)+ 8H2(g) at 5000C is 4.70 ×10-32.

Explanation of Solution

1) Concept:

Equilibrium constant expression for KP is the ratio of the equilibrium partial pressures of the product divided by the equilibrium partial pressure of the reactants each raised to respective stoichiometric coefficient in the balanced equation.

If the reaction temperature is higher, it increases the equilibrium constant of an endothermic reaction and decreases the equilibrium constant for an exothermic reaction.

2) Given:

Gf0CH4= -50.8kJmol ,Gf0CS2=65.1kJmol , Gf0H2=0 ,Gf0S8=0

3) Formula:

Relation between Gren0 and Gf0CH4 ,Gf0CS2 ,Gf0H2 ,Gf0S8 is given below;

Grxn0={4×Gf0CS2+8×Gf0H2}-4×Gf0CH4+1 × Gf0S8

The relation between Kp and Grxn0 is given below;

Kp= e-G0/RT

Where Kp is equilibrium constant, G0 is Gibbs free energy, R is gas constant,T is absolute temperature.

4) Calculations:

a)

We are given the temperature in degree Celsius. So we first convert it to Kelvin as shown;

TK= T0C+273

TK= 25+273

TK= 298 K

Grxn0 is calculated as follows;

Grxn0={4×Gf0CS2+8×,Gf0H2}-4×Gf0CH4+1 × Gf0S8

Grxn0={(4 mol×65.1kJmol)+(8 mol×0)}-4 mol×-50.8kJmol+1 mol×0 

Grxn0=( 260.4 kJ)--203.2 kJ

Grxn0=463.6 kJ

From the relation between Kp and G0 we can calculate Kp at 250C as

Kp= e-G0RT

KP= e-G0/RT

KP= e-4636008.314×298

KP= e-187.119

KP=5.44 ×10-82

b)

We are given temperature in degree Celsius; so we first convert it to Kelvin as:

TK= T0C+273

TK= 500+273

TK= 773 K

So value of Kp at 773 K is calculated as follows:

Kp= e-G0RT

KP= e-G0/RT

KP= e-4636008.314×773

KP= e-72.136

KP=4.70 ×10-32

Conclusion:

As the reaction is endothermic, the equilibrium constant value increases as the temperature raises from 250C to 5000C.

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Chapter 14 Solutions

Chemistry: An Atoms-Focused Approach

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