(1) H,(g) + Ce,(g) = 2HCP(g), K, (2) N,(g) + 3H,(g) = 2NH;(g), K, (3) N,(g) + 4H,(g) + Ct,(8) = 2NH¸CP(s), K3 In terms of K1, K2 and K3 , the equilibrium constant for the reaction NH,(g) + HCP(g) = NH,Ce(s) can be expressed as: Oa. 1 2 2 O b. 1 (K,) ² + (K,) + (K, O c. -) ( `K, K, K 3. d. 2 2 + (- + K, Oe. O f. 1 2 + (-) + (K K. O g. None of the above.

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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(1) H,(g) + Ce,(g)
= 2HCP(g), K,
(2) N,(g) + 3H,(g) = 2NH;(g), K,
(3) N,(g) + 4H,(g) + Ct,(8) = 2NH¸CP(s), K3
In terms of K1, K2 and K3 , the equilibrium constant for the reaction NH,(g) + HCP(g) = NH,Ce(s) can be expressed as:
Oa.
1
2
2
O b.
1
(K,) ² + (K,)
+ (K,
O c.
-) (
`K,
K,
K
3.
d.
2
2
+ (-
+
K,
Oe.
O f.
1
2
+ (-)
+ (K
K.
O g. None of the above.
Transcribed Image Text:(1) H,(g) + Ce,(g) = 2HCP(g), K, (2) N,(g) + 3H,(g) = 2NH;(g), K, (3) N,(g) + 4H,(g) + Ct,(8) = 2NH¸CP(s), K3 In terms of K1, K2 and K3 , the equilibrium constant for the reaction NH,(g) + HCP(g) = NH,Ce(s) can be expressed as: Oa. 1 2 2 O b. 1 (K,) ² + (K,) + (K, O c. -) ( `K, K, K 3. d. 2 2 + (- + K, Oe. O f. 1 2 + (-) + (K K. O g. None of the above.
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