Calculate the vapor pressure in millimeters of mercury for a 3.52 M KCI aqueous solution at 50°C. The density of the solution is 1.152 g/mL and the vapor pressure for pure water at 50°C is 92.5 mmHg. (MWKCI = 74.55 amu and MWH20 = 18.02 amu) %3D a 86.3 mmHg O b. 87.7 mmHg Ос. 83.3 mmHg O d. 80.9 mmHg

Chemistry: The Molecular Science
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ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
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Chapter13: The Chemistry Of Solutes And Solutions
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Calculate the vapor pressure in millimeters of mercury for a 3.52 M KCI aqueous solution at
50°C. The density of the solution is 1.152 g/mL and the vapor pressure for pure water at 50°C
is 92.5 mmHg.
(MWKCI = 74.55 amu and MWH20 = 18.02 amu)
%3D
a
86.3 mmHg
O b. 87.7 mmHg
O c.
83.3 mmHg
O d. 80.9 mmHg
Transcribed Image Text:Calculate the vapor pressure in millimeters of mercury for a 3.52 M KCI aqueous solution at 50°C. The density of the solution is 1.152 g/mL and the vapor pressure for pure water at 50°C is 92.5 mmHg. (MWKCI = 74.55 amu and MWH20 = 18.02 amu) %3D a 86.3 mmHg O b. 87.7 mmHg O c. 83.3 mmHg O d. 80.9 mmHg
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