A mixture of 0.02993 mol of O, 0.02165 mal of NOCI, 0.02691 mol of NO, and 0.01037 mol of C is placed in a 1.0-L steel pressure vessel at 2305 K. The following equilibrium is established: 1 0,(0) + 2 NOCK0) 2 No,(0) + 1 C(o) At equilibrium 0.00n268 mol of Cly is found in the reaction mixture. (a) Calculate the equilbrium partial pressures of Oy, NOCI, NO, and Cly. Pa(NOCI) - P(NO,)- (b) Calculate Ke for this reaction.

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A mixture of 0.02993 mol of Og, 0.02165 mal of NOCI, 0.02691 mol of NOz, and 0.01037 mol of Cly is placed in a 1.0-L steel pressure vessel at 2385 K. The following equilibrium is established:
1 0,(9) + 2 NOC(g) =2 NO;(9) + 1 Ciy(9)
At equilibrium 0.008268 mol of Clz is found in the reaction mixture.
(a) Calculate the equilibrium partial pressures of Oz, NOCI, NOz, and C.
Peg(0) -
Peg(NOCI) =
Pa(NO,)
Pa(C) -
(b) Calculate Ke for this reaction.
Transcribed Image Text:A mixture of 0.02993 mol of Og, 0.02165 mal of NOCI, 0.02691 mol of NOz, and 0.01037 mol of Cly is placed in a 1.0-L steel pressure vessel at 2385 K. The following equilibrium is established: 1 0,(9) + 2 NOC(g) =2 NO;(9) + 1 Ciy(9) At equilibrium 0.008268 mol of Clz is found in the reaction mixture. (a) Calculate the equilibrium partial pressures of Oz, NOCI, NOz, and C. Peg(0) - Peg(NOCI) = Pa(NO,) Pa(C) - (b) Calculate Ke for this reaction.
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