Simulation · Chemistry · Class 12
What does the vapour over a mixture contain?
From the lesson Vapour pressure and Raoult's law in Solutions. Change the values and watch what happens.
The idea behind it
NCERT §1.4
- Two volatile liquids in a closed vessel both evaporate until liquid and vapour are in equilibrium. By Dalton's law of partial pressures the total vapour pressure is p_total = p₁ + p₂.
- Raoult's law: in a solution of volatile liquids, the partial vapour pressure of each component is directly proportional to its mole fraction in the liquid: p₁ = p₁° x₁ and p₂ = p₂° x₂, where p° is the vapour pressure of the pure liquid at the same temperature.
- Combining the two, p_total = p₁° + (p₂° − p₁°) x₂: the total vapour pressure is a straight line in the mole fraction of either component, running from p₁° to p₂°.
- The vapour's composition follows from Dalton's law: y_i = p_i / p_total. The vapour is always richer than the liquid in the more volatile component, the one with the larger p°.
- Raoult's law is a special case of Henry's law: both say a volatile component's partial pressure is proportional to its mole fraction, and for Raoult's law the constant K_H equals p°.
- When the solute is non-volatile, only the solvent contributes vapour: p₁ = x₁ p₁°. Solute particles occupy part of the surface, fewer solvent molecules escape, and the solution's vapour pressure falls below the pure solvent's.
- This lowering depends on how much solute is present, not on what it is: 1.0 mol of sucrose and 1.0 mol of urea in 1 kg of water lower the vapour pressure by nearly the same amount.
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