The decomposition of phosphene (COCI2) gas into carbon monoxide (CO) and chlorine (Cl2) gases is very unfavorable at high temperatures. COCI2 (g) → CO (g) + Cl2 (g) K, = 1.32 x 10-8 at 2200°C What will be the equilibrium partial pressure of chlorine gas if the decomposition begins with only COCI2 present at a pressure of 1.12 atm? (A simplifying assumption may be taken to solve this problem). 1.22 x 104 atm 1.32 x 108 atm (A) (B) (C) (D) (E) 1.48 x 108 atm 1.12 atm 2.67 x 10-6+ atm
The decomposition of phosphene (COCI2) gas into carbon monoxide (CO) and chlorine (Cl2) gases is very unfavorable at high temperatures. COCI2 (g) → CO (g) + Cl2 (g) K, = 1.32 x 10-8 at 2200°C What will be the equilibrium partial pressure of chlorine gas if the decomposition begins with only COCI2 present at a pressure of 1.12 atm? (A simplifying assumption may be taken to solve this problem). 1.22 x 104 atm 1.32 x 108 atm (A) (B) (C) (D) (E) 1.48 x 108 atm 1.12 atm 2.67 x 10-6+ atm
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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
Transcribed Image Text:The decomposition of phosphene (COCI2) gas into carbon monoxide (CO) and chlorine (Clz) gases is very
unfavorable at high temperatures.
COCI2 (g) > CO (g) + Cl2 (g)
Kp =
= 1.32 x 108 at 2200°C
What will be the equilibrium partial pressure of chlorine gas if the decomposition begins with only COCI2
present at a pressure of 1.12 atm? (A simplifying assumption may be taken to solve this problem).
1.22 x 104 atm
(A)
(B)
(C)
(D)
(E)
1.32 x 108 atm
1.48 x 108 atm
1.12 atm
2.67 x 10-6+ atm
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