Thermodynamics: An Engineering Approach
Thermodynamics: An Engineering Approach
8th Edition
ISBN: 9780073398174
Author: Yunus A. Cengel Dr., Michael A. Boles
Publisher: McGraw-Hill Education
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Chapter 16.6, Problem 1P

Write three different KP relations for reacting ideal-gas mixtures, and state when each relation should be used.

Expert Solution & Answer
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To determine

The three different relations of Kp.

Answer to Problem 1P

The three relations of Kp are PCvCPDvDPAvAPBvB, eΔG*(T)/RuT and NCvCNDvDNAvANBvB(PNtotal)Δv.

Explanation of Solution

Write the relation of equilibrium constant (Kp) using partial pressure calculation.

Kp=PCvCPDvDPAvAPBvB

Here, stoichiometric coefficient of element i is vi and partial pressure of element iis Pi.

Write the relation of equilibrium constant using Gibbs function (ΔG*(T)).

Kp=eΔG*(T)/RuT

Here, universal gas constant is Ru and temperature is T.

Write the relation of equilibrium constant (Kp) using equilibrium composition calculation.

Kp=NCvCNDvDNAvANBvB(PNtotal)Δv

Here, partial pressure is P, number of moles of element i is Ni, and summation of number of moles is Ntotal.

Thus, the three relations of Kp are PCvCPDvDPAvAPBvB, eΔG*(T)/RuT and NCvCNDvDNAvANBvB(PNtotal)Δv.

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Chapter 16 Solutions

Thermodynamics: An Engineering Approach

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