Consider the following reaction, where the equilibrium constant Kp = 2.4 x 104 at a temperature of 800°C: 2 H2S(g) = 2 H2(g) + S2(g) A reaction mixture contains 0.135 atm of H2 0.075 atm of S2 0.465 atm of H2S Calculate the numerical value of the reaction quotient Qp for this reaction.

Physical Chemistry
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Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter5: Introduction To Chemical Equilibrium
Section: Chapter Questions
Problem 5.41E: Write the equilibrium constant expression for each reaction in terms of activities, simplifying...
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Consider the following reaction, where the equilibrium constant Kn = 2.4 x 10-4 at
a temperature of 800°C:
2 H2S(g) = 2 H2(g) + S2(g)
A reaction mixture contains
0.135 atm of H2
0.075 atm of S2
0.465 atm of H2S
Calculate the numerical value of the reaction quotient Qp for this reaction.
Transcribed Image Text:Consider the following reaction, where the equilibrium constant Kn = 2.4 x 10-4 at a temperature of 800°C: 2 H2S(g) = 2 H2(g) + S2(g) A reaction mixture contains 0.135 atm of H2 0.075 atm of S2 0.465 atm of H2S Calculate the numerical value of the reaction quotient Qp for this reaction.
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Step 1

Given ,

Reaction : 2H2S(g) 2H2(g) +S2(g)

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