We have introduced Raoult's Law and Henry's Law for ideal solutions along with freezing point depression, boiling point elevation and osmotic pressure. We will find that th are tools we can use to find non-ideal behavior of solutions. Distillation and Boiling Point Diagrams: 1.) The pure vapor pressures are 2.40 kPa for propanol and 5.83 kPa for ethanol. a.) Assuming ideality, calculate the composition of the vapor that results from an equilibrium mixture that is equimolar in propanol and ethanol. b.) If the vapor were condensed into a liquid and then allowed to come to a new equilibrium with its vapor, calculate the composition of the new vapor.
We have introduced Raoult's Law and Henry's Law for ideal solutions along with freezing point depression, boiling point elevation and osmotic pressure. We will find that th are tools we can use to find non-ideal behavior of solutions. Distillation and Boiling Point Diagrams: 1.) The pure vapor pressures are 2.40 kPa for propanol and 5.83 kPa for ethanol. a.) Assuming ideality, calculate the composition of the vapor that results from an equilibrium mixture that is equimolar in propanol and ethanol. b.) If the vapor were condensed into a liquid and then allowed to come to a new equilibrium with its vapor, calculate the composition of the new vapor.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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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We have introduced Raoult's Law and Henry's Law for ideal solutions along with
freezing point depression, boiling point elevation and osmotic pressure. We will find that the
are tools we can use to find non-ideal behavior of solutions.
Distillation and Boiling Point Diagrams:
1.) The pure vapor pressures are 2.40 kPa for propanol and 5.83 kPa for ethanol.
a.) Assuming ideality, calculate the composition of the vapor that results from an
equilibrium mixture that is equimolar in propanol and ethanol.
b.) If the vapor were condensed into a liquid and then allowed to come to a new
equilibrium with its vapor, calculate the composition of the new vapor.

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Boiling Point Diagram
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400.31
398.75
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395.63
394.06
392.5
390.94
389 38
387.81
386 25
384.69
383.13
381.56
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Boiling Point of Mixture in Kelvin
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