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Consider the reversible, elementary, gas phase reaction of A and B to form C occurring at 300 K in a variable volume (constant pressure) reactor with an initial volume of 1.0 L. For a reactant charge to the reactor of 1.0 mol of A, 2.0 mol of B, and no C, find the equilibrium conversion of A. Plot the composition in the reactor and the reactor volume as a function of time.

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Complete Question

The complete question is shown on the first uploaded image

Answer:

The equilibrium conversion is 1.562
(mol)/(lt) where lt denotes liter

The final pressure is 3895.94 Kpa

The plot of the composition of the reactor volume as a function of time is on the second uploaded image

Step-by-step explanation:

The explanation is shown on the third , fourth and fifth images

Consider the reversible, elementary, gas phase reaction of A and B to form C occurring-example-1
Consider the reversible, elementary, gas phase reaction of A and B to form C occurring-example-2
Consider the reversible, elementary, gas phase reaction of A and B to form C occurring-example-3
Consider the reversible, elementary, gas phase reaction of A and B to form C occurring-example-4
Consider the reversible, elementary, gas phase reaction of A and B to form C occurring-example-5
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