Chemistry · Ch 1 — Solutions
Relative Lowering of Vapour Pressure
Relative Lowering of Vapour Pressure
The vapour pressure of a solvent in a solution is always less than that of the pure solvent. Raoult found that this lowering depends only on the concentration of the solute particles and not on their identity — the first sign that we are dealing with a colligative property.
From Raoult's law to the lowering
For a solution containing a non-volatile solute, Raoult's law gives the vapour pressure of the solvent as
where is the vapour pressure of the solvent over the solution, is the vapour pressure of the pure solvent, and is the mole fraction of the solvent.
The reduction in the solvent's vapour pressure, written , is the difference between the pure-solvent value and the solution value:
Since a solution contains only solvent and solute, , so . Substituting:
Here is the mole fraction of the solute.
If several non-volatile solutes are present, the lowering depends on the sum of the mole fractions of all the solutes.
Relative lowering of vapour pressure
Dividing the lowering by the pure-solvent vapour pressure gives a quantity that equals the mole fraction of the solute directly:
The left-hand side is the relative lowering of vapour pressure. It is equal to the mole fraction of the solute — this is the colligative statement of Raoult's law.
Extending to moles, then to masses
Writing in terms of the numbers of moles of solvent () and solute ():
For dilute solutions the solute is in very small amount, so . Neglecting in the denominator:
Now express the moles through masses and molar masses, using and :
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