Answer: The value of
is 324
Step-by-step explanation:
We are given:
Initial pressure of
= 1.00 atm
The chemical equation for the conversion of
to
follows:

Initial: 1
At eqllm: 1-x 4x
We are given:
Equilibrium partial pressure of

Evaluating the value of 'x', we get:

The expression of
for the above reaction follows:



Putting values in above expression, we get:

Hence, the value of
is 324