The equilibrium constant, K, for the following reaction is 1.20×10-2 at 500 K. PCl5(g)=PCl3(g)+Cl2(g) An equilibrium mixture of the three gases in a 1.00 L flask at 500 K contains 0.164 M PCl5, 4.43×10-2 M PCl3 and 4.43×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.27×10-2 mol of Cl2(g) is added to the flask? [PCl5] = ______ M [PCl3] = ______M [Cl2] = ______ M
The equilibrium constant, K, for the following reaction is 1.20×10-2 at 500 K. PCl5(g)=PCl3(g)+Cl2(g) An equilibrium mixture of the three gases in a 1.00 L flask at 500 K contains 0.164 M PCl5, 4.43×10-2 M PCl3 and 4.43×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.27×10-2 mol of Cl2(g) is added to the flask? [PCl5] = ______ M [PCl3] = ______M [Cl2] = ______ M
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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The equilibrium constant, K, for the following reaction is 1.20×10-2 at 500 K.
PCl5(g)=PCl3(g)+Cl2(g)
An equilibrium mixture of the three gases in a 1.00 L flask at 500 K contains 0.164 M PCl5, 4.43×10-2 M PCl3 and 4.43×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.27×10-2 mol of Cl2(g) is added to the flask?
[PCl5] | = | ______ M |
[PCl3] | = | ______M |
[Cl2] | = | ______ M |
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