Consider the following reactions, with equilibrium contants as shown: (1) 2N,(g) + 0,(g) = 2N,0(g), K, (2) 2H,(g) + 0,(g) = 2H,0(g), K2 (3) 2N,(g) + 4H,(g) + 30,(g) = 2NH¸NO,(s), K3 In terms of K1, K2 and K3 , the equilibrium constant for the reaction N,0(g) + 2H,0 (g) =NH¸NO,(s) can be expressed as: а. (K, Ob. 1 (K,) ² + (K,) ² + (K, 1 Oc. Od. 1 3 е. Of. 1 K. + (K, K, None of the above. 8.

Chemistry: An Atoms First Approach
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Chapter16: Spontaneity, Entropy, And Free Energy
Section: Chapter Questions
Problem 83AE: Consider the following system at equilibrium at 25C: PCl3(g)+Cl(g)PCl5(g)G=92.50KJ What will happen...
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Consider the following reactions, with equilibrium contants as shown:
(1) 2N,(g) + 0,(g) = 2N,0(g), K,
(2) 2H,(g) + 0,(g) = 2H,0(g), K2
(3) 2N,(g) + 4H,(g) + 30,(g) = 2NH¸NO,(s), K3
In terms of K1, K2 and K3 , the equilibrium constant for the reaction N,0(g) + 2H,0(g) =NH¸NO,(s) can be expressed as:
а.
(K,
Ob.
1
(K,) ² + (K,) ² + (K,
1
Oc.
Od.
1
3
е.
Of.
1
K.
+ (K,
K,
None of the above.
8.
Transcribed Image Text:Consider the following reactions, with equilibrium contants as shown: (1) 2N,(g) + 0,(g) = 2N,0(g), K, (2) 2H,(g) + 0,(g) = 2H,0(g), K2 (3) 2N,(g) + 4H,(g) + 30,(g) = 2NH¸NO,(s), K3 In terms of K1, K2 and K3 , the equilibrium constant for the reaction N,0(g) + 2H,0(g) =NH¸NO,(s) can be expressed as: а. (K, Ob. 1 (K,) ² + (K,) ² + (K, 1 Oc. Od. 1 3 е. Of. 1 K. + (K, K, None of the above. 8.
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