Consider the reaction A (g) + B (g) --> 2 C (g) Where, deltaH0 = -15.62 kJ/mol deltaS0 = -10.20 J/mol K (a) Suppose that a tank is filled with A (g) and B (g) such that PA = 1.00 atm and PB = 1.00 atm at a temperature of 25.00C. Calculate the pressure of all species after the system has reached equilibrium assuming that the temperature is 25.00C. (b) If the temperature is decreased to 00C (at constant total pressure) what is the effect on the equilibrium pressure of C (g)? Calculate the equilibrium pressure of C (g) at 00C.
Consider the reaction A (g) + B (g) --> 2 C (g) Where, deltaH0 = -15.62 kJ/mol deltaS0 = -10.20 J/mol K (a) Suppose that a tank is filled with A (g) and B (g) such that PA = 1.00 atm and PB = 1.00 atm at a temperature of 25.00C. Calculate the pressure of all species after the system has reached equilibrium assuming that the temperature is 25.00C. (b) If the temperature is decreased to 00C (at constant total pressure) what is the effect on the equilibrium pressure of C (g)? Calculate the equilibrium pressure of C (g) at 00C.
Chemistry: An Atoms First Approach
2nd Edition
ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter7: Chemical Energy
Section: Chapter Questions
Problem 64E: Consider the reaction 2HCl(aq)+Ba(OH)2(aq)BaCl2(aq)+2H2O(l)H=118KJ Calculate the heat when 100.0 rnL...
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Consider the reaction
A (g) + B (g) --> 2 C (g)
Where,
deltaH0 = -15.62 kJ/mol
deltaS0 = -10.20 J/mol K
(a) Suppose that a tank is filled with A (g) and B (g) such that PA = 1.00 atm and PB = 1.00 atm at a temperature of 25.00C. Calculate the pressure of all species after the system has reached equilibrium assuming that the temperature is 25.00C.
(b) If the temperature is decreased to 00C (at constant total pressure) what is the effect on the equilibrium pressure of C (g)? Calculate the equilibrium pressure of C (g) at 00C.
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