Solution Formation The compositions of the solvent and the solute determine whether a substance will...

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Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance dissolves are stirring (agitation) temperature the surface area of the dissolving particles 16. 1

Transcript of Solution Formation The compositions of the solvent and the solute determine whether a substance will...

Page 1: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Solution Formation

The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance dissolves are

• stirring (agitation)

• temperature

• the surface area of the dissolving particles

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Page 2: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Solubility

A saturated solution contains the maximum amount of solute for a given quantity of solvent at a given temperature and pressure.

An unsaturated solution contains less solute than a saturated solution at a given temperature and pressure.

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Page 3: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Factors Affecting Solubility

A supersaturated solution contains more solute than it can theoretically hold at a given temperature.

The crystallization of a supersaturated solution can be initiated if a very small crystal, called a seed crystal, of the solute is added.

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Page 4: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Solubility

In a saturated solution, the rate of dissolving equals the rate of crystallization, so the total amount of dissolved solute remains constant.

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Page 5: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Solubility

Some liquids combine in all proportions, while others don’t mix at all.

• Two liquids are miscible if they dissolve in each other in all proportions.

• Two liquids are immiscible if they are insoluble in each other.

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Page 6: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Factors Affecting Solubility

Temperature

• The solubility of most solid substances increases as the temperature of the solvent increases.

• The solubilities of most gases are greater in cold water than in hot.

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Page 7: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Factors Affecting Solubility16.1

Page 8: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molarity

a.The concentration of a solution is a measure of the amount of solute that is dissolved in a given quantity of solvent.

A dilute solution is one that contains a small amount of solute.

A concentrated solution contains a large amount of solute.

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Page 9: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molarity

a. Molarity (M) is the number of moles of solute dissolved in one liter of solution.

b. To calculate the molarity of a solution, divide the moles of solute by the volume of the solution.

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Page 10: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molarity

a. To make a 0.5-molar (0.5M) solution, first add 0.5 mol of solute to a 1-L volumetric flask half filled with distilled water.

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Page 11: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molarity

a. Swirl the flask carefully to dissolve the solute.

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Page 12: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molarity

a. Fill the flask with water exactly to the 1-L mark.

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Page 13: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 14: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 15: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 16: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Sample Problem 16.316.3

Page 17: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Making Dilutions

Diluting a solution reduces the number of moles of solute per unit volume, but the total number of moles of solute in solution does not change.

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Page 18: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Making Dilutions

a.The total number of moles of solute remains unchanged upon dilution, so you can write this equation.

a.M1 and V1 are the molarity and volume of the initial solution, and M2 and V2 are the molarity and volume of the diluted solution.

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Page 19: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 20: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 21: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

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Page 22: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Making Dilutions

a. To prepare 100 ml of 0.40M MgSO4 from a stock solution of 2.0M MgSO4, a student first measures 20 mL of the stock solution with a 20-mL pipet.

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Page 23: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Making Dilutions

a. She then transfers the 20 mL to a 100-mL volumetric flask.

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Page 24: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Making Dilutions

a. Finally she carefully adds water to the mark to make 100 mL of solution.

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Page 25: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Percent Solutions

Concentration in Percent (Volume/Volume)

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Page 26: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Percent Solutions

Concentration in Percent (Mass/Mass)

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Page 27: Solution Formation The compositions of the solvent and the solute determine whether a substance will dissolve. The factors that determine how fast a substance.

Molality and Mole Fraction

a. The molality (m) is the number of moles of solute dissolved in 1 kilogram (1000 g) of solvent. Molality is also known as molal concentration.

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