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An ideal solution system consists of one mole of -pentane and one mole of n-hexane is heated to 110 F. Calculate the following; Dew point

An ideal solution system consists of one mole of -pentane and one mole of n-hexane is heated to 110 F.

Calculate the following;

  1. Dew point pressure.
  2. Composition of the liquid at the dew point pressure.
  3. Bubble point pressure.
  4. Composition of vapor at the bubble point pressure.
  5. Composition of the liquid and the vapor if the system pressure is 100 psia.
  6. Plot the composition of n-pentne on the x-axis versus the pressure on the y-axis.

Repeat the calculations assuming the system is non-ideal and compare the results by plotting the ideal and non-ideal cases on the same graph and comment on the graph.

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An ideal solution system consists of one mole of n-pentane and one mole of n-hexane is heated to 110F, Calculate the following; 1. Dew point pressure. 2. Composition of the liquid at the dew point pressure. 3. Bubble point pressure. 4. Composition of vapor at the bubble point pressure. 5. Composition of the liquid and the vapor if the system pressure is 100psia. 6. Plot the composition of n-pentne on the x-axis versus the pressure on the y-axis. Repeat the calculations assuming the system is non-ideal and compare the results by plotting the ideal and non-ideal cases on the same graph and comment on the graph. An ideal solution system consists of one mole of n-pentane and one mole of n-hexane is heated to 110F, Calculate the following; 1. Dew point pressure. 2. Composition of the liquid at the dew point pressure. 3. Bubble point pressure. 4. Composition of vapor at the bubble point pressure. 5. Composition of the liquid and the vapor if the system pressure is 100psia. 6. Plot the composition of n-pentne on the x-axis versus the pressure on the y-axis. Repeat the calculations assuming the system is non-ideal and compare the results by plotting the ideal and non-ideal cases on the same graph and comment on the graph

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