The reaction vessel containing NOCI(g) is maintained at 27.0 °C until equilibrium has been achieved according to the reaction shown above. The total pressure of the gas mixture in the reaction vessel at equilibrium is equal to 0.520 atm. Calculate the partial pressures, in atmospheres, of NOCI(g), NO(g), and Cl2(g) in the reaction vessel at equilibrium at 27.0°C" **Remember you can use partial pressures in place of concentration for Kp. (NOCI] = atm [C2] = atm [NO] = atm

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The reaction vessel containing NOCI(g) is maintained at 27.0 °C until equilibrium has been
achieved according to the reaction shown above. The total pressure of the gas mixture in
the reaction vessel at equilibrium is equal to 0.520 atm.
Calculate the partial pressures, in atmospheres, of NOCI(g), NO(g), and Cl2(g) in the
reaction vessel at equilibrium at 27.0°C
**Remember you can use partial pressures in place of concentration for Kp.
[NOCI] =
atm
[C2] =
atm
[NO] =
atm
Transcribed Image Text:The reaction vessel containing NOCI(g) is maintained at 27.0 °C until equilibrium has been achieved according to the reaction shown above. The total pressure of the gas mixture in the reaction vessel at equilibrium is equal to 0.520 atm. Calculate the partial pressures, in atmospheres, of NOCI(g), NO(g), and Cl2(g) in the reaction vessel at equilibrium at 27.0°C **Remember you can use partial pressures in place of concentration for Kp. [NOCI] = atm [C2] = atm [NO] = atm
A sample of NOCI(g) is placed in a rigid, evacuated 5.00 L reaction vessel. The initial pressure
of NOCI(g) before any chemical reaction occurs is equal to 0.500 atm at a temperature of
27.0°C.
2NOCI <--> 2NO + Cl2
Transcribed Image Text:A sample of NOCI(g) is placed in a rigid, evacuated 5.00 L reaction vessel. The initial pressure of NOCI(g) before any chemical reaction occurs is equal to 0.500 atm at a temperature of 27.0°C. 2NOCI <--> 2NO + Cl2
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