Benzene (C,H,) and toluene (C,H,CH;) form nearly ideal solutions. At 20°C the vapor pressure of benzene is 74.7 torr, and that of toluene is 22.3 torr. (a) Find the equilibrium par- tial vapor pressures above a 20°C solution of 100.0 g of benzene plus 100.0 g of toluene. (b) Find the mole fractions in the vapor phase that is in equilibrium with the solution of part (a).
Benzene (C,H,) and toluene (C,H,CH;) form nearly ideal solutions. At 20°C the vapor pressure of benzene is 74.7 torr, and that of toluene is 22.3 torr. (a) Find the equilibrium par- tial vapor pressures above a 20°C solution of 100.0 g of benzene plus 100.0 g of toluene. (b) Find the mole fractions in the vapor phase that is in equilibrium with the solution of part (a).
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![Benzene (C,H,) and toluene (C,H,CH;) form nearly
ideal solutions. At 20°C the vapor pressure of benzene is 74.7
torr, and that of toluene is 22.3 torr. (a) Find the equilibrium par-
vapor pressures above a 20°C solution of 100.0 g of benzene
plus 100.0 g of toluene. (b) Find the mole fractions in the vapor
phase that is in equilibrium with the solution of part (a).
tial](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd2261535-b22f-4f2a-9f40-f811197d27df%2Fb339b0c9-ef19-485c-be95-eae8405b3954%2Fjhua52_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Benzene (C,H,) and toluene (C,H,CH;) form nearly
ideal solutions. At 20°C the vapor pressure of benzene is 74.7
torr, and that of toluene is 22.3 torr. (a) Find the equilibrium par-
vapor pressures above a 20°C solution of 100.0 g of benzene
plus 100.0 g of toluene. (b) Find the mole fractions in the vapor
phase that is in equilibrium with the solution of part (a).
tial
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