1-Propanol (Pi = 20.9 Torr at 25 °C) and 2-propanol (P2 = 45.2 Torr at 25 °C) form ideal solutions in all proportions. %3D Let x1 and x2 represent the mole fractions of 1-propanol and 2-propanol in a liquid mixture, respectively, and yı and y2 represent the mole fractions of each in the vapor phase. For a solution of these liquids with x1 = 0.710, calculate the composition of the vapor phase at 25 °C. %3D

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1-Propanol (Pi = 20.9 Torr at 25 °C) and 2-propanol (P3 = 45.2 Torr at 25 °C) form ideal solutions in all proportions.
Let x1 and x2 represent the mole fractions of 1-propanol and 2-propanol in a liquid mixture, respectively, and y and y2
represent the mole fractions of each in the vapor phase.
For a solution of these liquids with x1 = 0.710, calculate the composition of the vapor phase at 25 °C.
yi =
y2 =
Transcribed Image Text:1-Propanol (Pi = 20.9 Torr at 25 °C) and 2-propanol (P3 = 45.2 Torr at 25 °C) form ideal solutions in all proportions. Let x1 and x2 represent the mole fractions of 1-propanol and 2-propanol in a liquid mixture, respectively, and y and y2 represent the mole fractions of each in the vapor phase. For a solution of these liquids with x1 = 0.710, calculate the composition of the vapor phase at 25 °C. yi = y2 =
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