a. For the reaction: COC₁₂harrCO(g) + Cl2(g), the value of the equilibrium constant, Kc, is 8.1 × 10*. If the initial concentration of CoCl2 is 0.85 molar, find the equilibrium concentrations of all species. E The reaction: NO2(g) + NO(g) harr N2O(g) + O2(g) has an equilibrium constant, Kp of 0.914. If at some point in time, the partial pressures of both NO and O2 are both 0.425atm and NO2 and NO are both 0.200atm, find the partial pressures of all gases at equilibrium. c. For the reaction: CO + Cl₂harrCOC₁₂, the value of the equilibrium constant, Kc, is 1240. If the initial concentrations of CO and Cl₂ are both 0.800 molar find the concentrations of all species at equilibrium.

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a. For the reaction: COC₁₂harrCO(g) + Cl2(g), the value of the
equilibrium constant, Kc, is 8.1 × 10*. If the initial concentration of
COCI, is 0.85 molar, find the equilibrium concentrations of all species. b
The reaction: NO2(g) + NO(g) harr N2O(g) + O2(g) has an
equilibrium constant, Kp of 0.914. If at some point in time, the partial
pressures of both N20 and 0₂ are both 0.425atm and NO2 and NO are
both 0.200atm, find the partial pressures of all gases at equilibrium. c.
For the reaction: CO + Cl₂harr COCI₂, the value of the equilibrium
constant, Kc, is 1240. If the initial concentrations of CO and Cl₂ are
both 0.800 molar find the concentrations of all species at equilibrium.
Transcribed Image Text:a. For the reaction: COC₁₂harrCO(g) + Cl2(g), the value of the equilibrium constant, Kc, is 8.1 × 10*. If the initial concentration of COCI, is 0.85 molar, find the equilibrium concentrations of all species. b The reaction: NO2(g) + NO(g) harr N2O(g) + O2(g) has an equilibrium constant, Kp of 0.914. If at some point in time, the partial pressures of both N20 and 0₂ are both 0.425atm and NO2 and NO are both 0.200atm, find the partial pressures of all gases at equilibrium. c. For the reaction: CO + Cl₂harr COCI₂, the value of the equilibrium constant, Kc, is 1240. If the initial concentrations of CO and Cl₂ are both 0.800 molar find the concentrations of all species at equilibrium.
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