Given that the vapor pressure of water is 17.54 Torr at 20 °C, calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.20 m in sucrose (C₁2H₂2011). ΔΡ = 0.669 Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.20 m in calcium chloride. Assume 100% dissociation for electrolytes. ΔΡ 2.67 Incorrect Torr Torr

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter12: Solutions
Section: Chapter Questions
Problem 12.86QE
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General Chemistry 4th Edition
McQuarrie • Rock • Gallogly
Given that the vapor pressure of water is 17.54 Torr at 20 °C, calculate the vapor-pressure lowering, AP, of an aqueous solution
that is 2.20 m in sucrose (C₁2H₂2O11).
ΔΡ =
0.669
ΔΡ
Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.20 m in calcium chloride. Assume 100%
dissociation for electrolytes.
University Science Books
presented by Macmillan Learning
2.67
Incorrect
Torr
Torr
Transcribed Image Text:General Chemistry 4th Edition McQuarrie • Rock • Gallogly Given that the vapor pressure of water is 17.54 Torr at 20 °C, calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.20 m in sucrose (C₁2H₂2O11). ΔΡ = 0.669 ΔΡ Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.20 m in calcium chloride. Assume 100% dissociation for electrolytes. University Science Books presented by Macmillan Learning 2.67 Incorrect Torr Torr
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