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 2.30 m in sucrose (C,,H,„0). AP = Torr Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.30 m in aluminum chloride. Assume 100% dissociation for electrolytes. AP = Torr

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter11: Solutions
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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 2.30 m in sucrose (C,,H,01).
AP =
Torr
Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.30 m in aluminum chloride. Assume 100%
dissociation for electrolytes.
AP =
Torr
Transcribed Image Text: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 2.30 m in sucrose (C,,H,01). AP = Torr Calculate the vapor-pressure lowering, AP, of an aqueous solution that is 2.30 m in aluminum chloride. Assume 100% dissociation for electrolytes. AP = Torr
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