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The partial pressure of a gas in a mixture is the pressure that each individual gas contributes to the total pressure of the gas mixture. It depends on the mole fraction of that gas in the mixture and the total pressure.
The mole fraction of a gas in a mixture is the ratio of the moles of to the total moles of all gases in the mixture:
The partial pressure of gas , denoted , is calculated by multiplying its mole fraction by the total pressure of the gas mixture:
This relationship can be applied to each component gas in the mixture. The sum of the partial pressures of all gases in the mixture equals the total pressure.
Example: Calculating Partial Pressures Suppose a mixture contains gases , , and with mole fractions , , and , and the total pressure is 100 kPa.
To find the partial pressures:
In equilibrium problems, an I.C.E (Initial, Change, Equilibrium) table is often useful to organize the moles of each species throughout the reaction stages.
Example Calculation with I.C.E Table For the reaction:
Suppose 1.00 mol of and 1.00 mol of are initially present, and at equilibrium, there is 0.824 mol of
Species | Initial Moles | Change in Moles | Equilibrium Moles |
---|---|---|---|
1.00 | -0.412 | 1.00 • 0.412 = 0.588 | |
1.00 | -0.412 | 1.00 • 0.412 = 0.588 | |
0.00 | +0.824 | 0.00 + 0.824 = 0.824 |
Explanation of Each Column
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