The reaction NO2(g) + SO2(g) ⇌NO (g) + SO3(g) has a Kc =10 under some conditions. If the initial concentrations of both NO2 and SO2 are 0.5 M, then calculate the equilibrium concentrations of all four species.
[NO2]eq= __________
[SO2]eq= __________
[NO]eq= __________
[SO3]eq= _________
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The reaction NO2(g) + SO2(g) ⇌NO (g) + SO3(g) has a Kc =10 under some conditions....
At a particular temperature, K = 3.75 for the reaction: SO2(g) + NO2(g) SO3(g) + NO(g). If all four gases had initial concentrations of 0.250 M, calculate the equilibrium concentrations of the gases.
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12. (10 pts) At 25 °C, K. = 3.75 for the reaction SO2(g) + NO2(g) = SO3(g) + NO(g). Calculate the concentrations of all species at equilibrium, when the initial concentrations are all 0.800 M and equilibrium established. 13. (10 pts) Calculate the pH of a 0.10 M NaNO, solution (K, -4.5 x 10" for HNO2).
At 550 K, the reaction- SO2(g) + NO2(g) ⇌ SO3(g) + NO(g) has Kc = 770. If 0.496 moles of SO3 and 0.496 moles of NO are placed in a 5.00-L container at 550 K, what is the concentration of SO3 at equilibrium? A) 4.3 M B) 0.096 M C) 0.099 M D) 17 M E) 0.025 M
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At some temperature, the value of the equilibrium constant for the reaction: SO2 (g) + NO2(g) ↔ SO3(g) + NO(g) has the value K = 0.640. If all four gases are placed into a container, each with an initial partial pressure of 1.25 atm, calculate the equilibriuym partial pressure (in atm) of SO3(g)
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Consider the following reaction and its equilibrium constant: SO2(g) + NO2(8) - SO3(g) + NO(g) Kc=0.33 A reaction mixture contains 1.0 mol L-1 SO2, 0.50 mol L-1 NO2,0.50 mol L-1 SO3, and 1.0 mol L-1 NO. Which of the following statements is TRUE concerning this system? A) The reaction will shift in the direction of reactants. B) The system is at equilibrium. C) The reaction quotient will decrease. D) The reaction will shift in the direction of products. E) The...
40. Consider the following reaction equation: SO2 + NO2 → SO3+NO If.35 moles of SO2 and NO2 are delivered into a 1.00 L reactor at a particular temperature and having established equilibrium, calculate the value of Kc for this reaction if it is determine d that so,=214 M at equilibrium. )︿ C·