Vapour-liquid equilibrium of a two-component ideal solution of trichloroethene (C₂HC13) and trichloromethane (CHC13) is established at 25 °C. The mole fraction of CHCl3 in the vapour phase is 0.36. What is the mass fraction of C₂HCl3 in the liquid phase? Round your answer to two significant figures. The vapour pressures of trichloroethene and trichloromethane at 25 °C are: Pvap,C2HC13= 73.0 mmHg Pvap, CHC13= 199.1 mm Hg Number g C₂HCl3/g solution

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter12: Solutions
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Vapour-liquid equilibrium of a two-component ideal solution of trichloroethene (C₂HC13) and trichloromethane
(CHC13) is established at 25 °C. The mole fraction of CHCl3 in the vapour phase is 0.36. What is the mass fraction
of C₂HCl3 in the liquid phase? Round your answer to two significant figures.
The vapour pressures of trichloroethene and trichloromethane at 25 °C are:
Pvap.C2HC13= 73.0 mmHg
Pvap,CHC13= 199.1 mm Hg
Number
g C₂HCl3/g solution
Transcribed Image Text:Vapour-liquid equilibrium of a two-component ideal solution of trichloroethene (C₂HC13) and trichloromethane (CHC13) is established at 25 °C. The mole fraction of CHCl3 in the vapour phase is 0.36. What is the mass fraction of C₂HCl3 in the liquid phase? Round your answer to two significant figures. The vapour pressures of trichloroethene and trichloromethane at 25 °C are: Pvap.C2HC13= 73.0 mmHg Pvap,CHC13= 199.1 mm Hg Number g C₂HCl3/g solution
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