Question

The vapour pressure of pure liquid A at 300 K is 76.7 kPa and that of pure liquid B is 52.0 kPa. These two compounds form ideal liquid and gaseous mixtures. Consider the equilibrium composition of a mixture in which the mole fraction of A in the vapour is 0.350. Calculate the total pressure of the vapour and the composition of the liquid mixture.

          The vapour pressure of pure liquid A at 300 K is 76.7 kPa and that of pure liquid B is 52.0 kPa. These two compounds form ideal liquid and gaseous mixtures. Consider the equilibrium composition of a mixture in which the mole fraction of A in the vapour is 0.350. Calculate the total pressure of the vapour and the composition of the liquid mixture.
        
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Chemistry: Structure and Properties
Chemistry: Structure and Properties
Nivaldo Tro 2nd Edition
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The vapour pressure of pure liquid A at 300 K is 76.7 kPa and that of pure liquid B is 52.0 kPa. These two compounds form ideal liquid and gaseous mixtures. Consider the equilibrium composition of a mixture in which the mole fraction of A in the vapour is 0.350. Calculate the total pressure of the vapour and the composition of the liquid mixture.
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Transcript

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00:01 If we assume an equilibrium mixture of a and b, we can calculate the total pressure of the vapor above the mixture using rayoltslaw.
00:17 Raylitz law states that the total pressure of the solution will be equal to the pressure of a multiplied by the mole fraction a, pressure of pure a, plus the pressure of pure b, multiplied by the mole fraction b.
00:39 They tell us that the mole fraction of a is 0 .350, and that the vapor pressure of pure a is 76 .7 kilopascal at 300 kelvin...
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