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Define a colloid.

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A colloid is a mixtu...

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A 150.0 mL sample of an aqueous solution at 25 °C contains 15.2 mg of an unknown nonelectrolyte compound.If the solution has an osmotic pressure of 8.44 Torr,what is the molar mass of the unknown compound?


A) 223 g mol-1
B) 294 g mol-1
C) 341 g mol-1
D) 448 g mol-1
E) 195 g mol-1

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Choose the aqueous solution that has the highest boiling point.These are all solutions of nonvolatile solutes and you should assume ideal van't Hoff factors where applicable.


A) 0.100 mol kg-1 AlCl3
B) 0.100 mol kg-1 NaCl
C) 0.100 mol kg-1 MgCl2
D) 0.100 mol kg-1 C6H12O6
E) They all have the same boiling point.

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Calculate the total solution volume required to produce an osmotic pressure of 4.87 mbar using 8.21 mg of a protein with a molar mass of 4450 g mol-1 at 25.0 °C.


A) 10.6 mL
B) 4.79 mL
C) 12.3 mL
D) 9.39 mL
E) 8.00 mL

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Identify the classification of milk.


A) aerosol
B) solid aerosol
C) foam
D) emulsion
E) solid emulsion

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Explain why the van't Hoff factor for MgCl2 is less than its predicted value.

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The hydrated Mg2+ and Cl- ions ca...

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A compound is found to have a molar mass of 190 g mol-1.If 0.0673 g of the compound is dissolved in enough water to make 200 mL of solution at 25 °C,what is the osmotic pressure of the resulting solution?


A) 1.21 × 10-2 bar
B) 6.12 × 10-2 bar
C) 4.39 × 10-2 bar
D) 3.97 × 10-2 bar
E) 2.28 × 10-2 bar

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Identify the solute with the lowest van't Hoff factor.


A) nonelectrolyte
B) NaCl
C) MgSO4
D) MgCl2
E) FeCl3

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Calculate the mass of oxygen (in mg) dissolved in a 5.00 L bucket of water exposed to a pressure of 1.13 bar of air.Assume the mole fraction of oxygen in air to be 0.21 and the Henry's law constant for oxygen in water at this temperature to be 1.3 × 10-3 mol L-1 bar-1.


A) 49.4 mg
B) 23.5 mg
C) 9.87 mg
D) 27.3 mg
E) 13.7 mg

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Identify the classification of whipped cream.


A) aerosol
B) solid aerosol
C) foam
D) emulsion
E) solid emulsion

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A solution of LiCl in water is 20.0 wt% LiCl.What is the mole fraction of LiCl? Assume the density of the solution is 1.00 g mL-1.


A) 0.0960
B) 0.106
C) 0.472
D) 4.44

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Identify the compound whose solubility is least affected by temperature.


A) Na2SO4
B) K2Cr2O7
C) KNO3
D) KClO3
E) NaCl

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Calculate the vapour pressure of pure water at 85 °C if a 285 mL solution containing 173.0 g of mannose,C6H12O6,has a vapour pressure of 545.0 mbar.


A) 531 mbar
B) 578 mbar
C) 508 mbar
D) 599 mbar
E) 520 mbar

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A compound is found to have a molar mass of 598 g mol-1.If 35.8 mg of the compound is dissolved in enough water to make 175 mL of solution at 25 °C,what is the osmotic pressure of the resulting solution?


A) 3.42 × 10-3 bar
B) 8.48 × 10-3 bar
C) 5.01 × 10-3 bar
D) 5.99 × 10-3 bar
E) 8.06 × 10-3 bar

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How much water must be added to 40.0 g of CaCl2 to produce a solution that is 35.0 wt% CaCl2?


A) 54.0 g
B) 74.2 g
C) 87.5 g
D) 114 g

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An aqueous solution is 0.387 mol L-1 in HCl.What is the molality of the solution if the density is 1.23 g mL-1?


A) 0.115 mol kg-1
B) 0.387 mol kg-1
C) 0.315 mol kg-1
D) 0.411 mol kg-1
E) 0.318 mol kg-1

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Which of the following statements is TRUE?


A) The solubility of a gas is not dependent on either temperature or pressure.
B) The solubility of a gas is highly dependent on pressure.
C) The solubility of a gas is highly dependent on both pressure and temperature.
D) The solubility of a gas is highly dependent on temperature.
E) None of the above.

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Which of the following statements is TRUE?


A) In general,the solubility of a solid in water decreases with increasing temperature.
B) In general,the solubility of a gas in water decreases with increasing temperature.
C) The solubility of a gas in water usually increases with decreasing pressure.
D) The solubility of an ionic solid in water decreases with increasing temperature.
E) None of the above statements is true.

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Choose the aqueous solution with the highest vapour pressure.These are all solutions of nonvolatile solutes and you should assume ideal van't Hoff factors where applicable.


A) 0.50 mol kg-1 C3H8O3
B) 0.50 mol kg-1 C2H6O2
C) 0.50 mol kg-1 C6H12O6
D) 0.50 mol kg-1 C12H22O11
E) They all have about the same vapour pressure.

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Choose the situation below that would result in an exothermic ?solutionH.


A) when Δsolute H|\Delta _ { \text {solute } } H \mid > Δ hydration H|\Delta \text { hydration } H \mid
B) when Δsolute H|\Delta _ { \text {solute } } H \mid is close to Δ hydration H|\Delta \text { hydration } H \mid
C) when Δsolute H|\Delta _ { \text {solute } } H \mid < Δ hydration H|\Delta \text { hydration } H \mid
D) when Δsolvent H\left| \Delta _ { \text {solvent } } H \right| > Δsolute H|\Delta _ { \text {solute } } H \mid
E) There isn't enough information to determine the answer.

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