Given that the vapour pressure of ethanol at 20°C is 44 mmHg and the vapour pressure of methano! at the same temperature is 94 mmHg. For a mixture of 30.0g of methanol and 45.0g of ethanol. i) Calculate the mole fraction of methano! and ethanol vapour for the solution at 20°C Calculate the vapour pressure of methanol and ethanol in the vapour above this solution at 20°C

Chemistry
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question (i) and (ii)

 

A mixture of ethanol (C,H5OH, b.p. 78.5°C) and methanol (CH3OH, b.p.64.5°C) obey
Raoult's Law closely while a mixture of trichloromethane (CHCI3, b.p. 61.8°C) and ether
(C2H5OC2H5; b.p. 34.6°C) show a negative deviation.
Transcribed Image Text:A mixture of ethanol (C,H5OH, b.p. 78.5°C) and methanol (CH3OH, b.p.64.5°C) obey Raoult's Law closely while a mixture of trichloromethane (CHCI3, b.p. 61.8°C) and ether (C2H5OC2H5; b.p. 34.6°C) show a negative deviation.
Given that the vapour pressure of ethanol at 20°C is 44 mmHg and the vapour
pressure of methano! at the same temperature is 94 mmHg. For a mixture of 30.0g
of methanol and 45.0g of ethanol.
i)
Calculate the mole fraction of methano! and ethanol vapour for the solution
at 20°C
き 白
e a a IS Q n
ii)
Calculate the vapour pressure of methanol and ethanol in the vapour above
this solution at 20°C
a . a SD a
a イ
. DA. ... ... G A ..
Transcribed Image Text:Given that the vapour pressure of ethanol at 20°C is 44 mmHg and the vapour pressure of methano! at the same temperature is 94 mmHg. For a mixture of 30.0g of methanol and 45.0g of ethanol. i) Calculate the mole fraction of methano! and ethanol vapour for the solution at 20°C き 白 e a a IS Q n ii) Calculate the vapour pressure of methanol and ethanol in the vapour above this solution at 20°C a . a SD a a イ . DA. ... ... G A ..
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