pe GE Class 45 Worksheet CHE131A&B SP2020 Name: |Peany ichUKUU AKpone 13.4 Colligative Properties of Nonelectrolytes and 13.5 Colligative Properties of Electrolytes 1. Calculate the following: a. The vapor pressure of benzene, C6H6, at 25°C in an ideal solution containing 1.66 mol of benzene and 0.313 mol of toluene. The vapor pressure of pure benzene is 96.0 torr. b. The vapor pressure of toluene, C7H8, at 25°C in an ideal solution containing 1.66 mol of benzene and 0.313 mol of toluene. The vapor pressure of pure toluene is 27.0 torr. d R c. The total vapor pressure at 25°C above a solution containing 1.66 mol benzene and 0.313 mol toluene. 2. Sucrose, C12H22011, is a nonvolatile and nonionic. For a 3.15 m solution of sucrose in water, calculate the following (see table 13.3 in your textbook): a. the freezing point of the solution D-Ri b. the boiling point of the solution at 1.0000atm 3. Calculate the osmotic pressure of a 0.0100M solution of glucose in water at 25°C. 4. Determine the Van't Hoff factor for the following solutions: a. 0.25 M KCl INCH

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pe
GE
Class 45 Worksheet
CHE131A&B SP2020
Name: |Peany ichUKUU AKpone
13.4 Colligative Properties of Nonelectrolytes and 13.5 Colligative Properties of Electrolytes
1. Calculate the following:
a. The vapor pressure of benzene, C6H6, at 25°C in an ideal solution containing 1.66 mol of benzene
and 0.313 mol of toluene. The vapor pressure of pure benzene is 96.0 torr.
b. The vapor pressure of toluene, C7H8, at 25°C in an ideal solution containing 1.66 mol of benzene
and 0.313 mol of toluene. The vapor pressure of pure toluene is 27.0 torr.
d R
c. The total vapor pressure at 25°C above a solution containing 1.66 mol benzene and 0.313 mol
toluene.
2. Sucrose, C12H22011, is a nonvolatile and nonionic. For a 3.15 m solution of sucrose in water,
calculate the following (see table 13.3 in your textbook):
a. the freezing point of the solution
D-Ri
b. the boiling point of the solution at 1.0000atm
3. Calculate the osmotic pressure of a 0.0100M solution of glucose in water at 25°C.
4. Determine the Van't Hoff factor for the following solutions:
a. 0.25 M KCl
INCH
Transcribed Image Text:pe GE Class 45 Worksheet CHE131A&B SP2020 Name: |Peany ichUKUU AKpone 13.4 Colligative Properties of Nonelectrolytes and 13.5 Colligative Properties of Electrolytes 1. Calculate the following: a. The vapor pressure of benzene, C6H6, at 25°C in an ideal solution containing 1.66 mol of benzene and 0.313 mol of toluene. The vapor pressure of pure benzene is 96.0 torr. b. The vapor pressure of toluene, C7H8, at 25°C in an ideal solution containing 1.66 mol of benzene and 0.313 mol of toluene. The vapor pressure of pure toluene is 27.0 torr. d R c. The total vapor pressure at 25°C above a solution containing 1.66 mol benzene and 0.313 mol toluene. 2. Sucrose, C12H22011, is a nonvolatile and nonionic. For a 3.15 m solution of sucrose in water, calculate the following (see table 13.3 in your textbook): a. the freezing point of the solution D-Ri b. the boiling point of the solution at 1.0000atm 3. Calculate the osmotic pressure of a 0.0100M solution of glucose in water at 25°C. 4. Determine the Van't Hoff factor for the following solutions: a. 0.25 M KCl INCH
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