colligative properties part 3.ppt

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Colligative Properties

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Colligative Properties of matter

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Page 1: Colligative Properties part 3.ppt

Colligative Properties

Page 2: Colligative Properties part 3.ppt

Colligative properties

Properties that depend on the TOTAL number of dissolved particles

Page 3: Colligative Properties part 3.ppt

Colligative properties

Properties that depend on the TOTAL number of dissolved particles Vapor pressure lowering Boiling point elevation Freezing point depression Osmotic pressure

Page 4: Colligative Properties part 3.ppt

Vapor pressure lowering

Adding solute leads to more intermolecular attractions

It becomes harder for solvent molecules to escape into the gas phase

Page 5: Colligative Properties part 3.ppt

Vapor pressure lowering

More solute lower vapor pressure than pure solvent

Raoult’s Law

oAAA PXP

Page 6: Colligative Properties part 3.ppt

Effects of non-volatile solutes

Page 7: Colligative Properties part 3.ppt

Boiling Point Elevation

bbp kmT

Page 8: Colligative Properties part 3.ppt

Freezing Point Depression

ffp kmT

Page 9: Colligative Properties part 3.ppt

Electrolytes vs. non-electrolytes

Colligative properties depend on total number of dissolved particles

Page 10: Colligative Properties part 3.ppt

Electrolytes vs. non-electrolytes

Colligative properties depend on total number of dissolved particles Non-electrolytes don’t dissociate Electrolytes DO dissociate into ions in solution

Page 11: Colligative Properties part 3.ppt

Van’t Hoff factor, i

For non-electrolyte, i = 1 For electolytes, i = # of ions in formula

(theoretical maximum)

Page 12: Colligative Properties part 3.ppt

Predict the van’t Hoff factor:

Glucose, C6H12O6

NaCl AlCl3 Methanol, CH3OH

Page 13: Colligative Properties part 3.ppt

Ion pairing

One mole of NaCl does not yield two moles of ions

Some ions will reassociate for a short time

The actual van’t Hoff factor will be slightly lower than predicted

Page 14: Colligative Properties part 3.ppt

van’t hoff factors

More ion pairing occurs at higher concentrations

Page 15: Colligative Properties part 3.ppt

van’t hoff factors

More ion pairing occurs at higher concentrations

Page 16: Colligative Properties part 3.ppt

Incorporating the van’t Hoff factor

Boiling point elevation:

bbp kimT

Page 17: Colligative Properties part 3.ppt

Incorporating the van’t Hoff factor

Boiling point elevation:

Freezing point depression:

bbp kimT

ffp kimT

Page 18: Colligative Properties part 3.ppt

Problem 33.5 g of potassium chloride are dissolved in 459 g of water.

Calculate the boiling point and freezing point of the resulting solution.

Page 19: Colligative Properties part 3.ppt

Problem 17.8 g of an unknown solute are dissolved in 276 g of water. If the

new freezing point is -1.67oC, calculate the molar mass of the unknown substance.