Q.The relative lowering of vapour pressure of an aqueous solution containing non-volatile solute is 0·0225. The mole fraction of the non-volatile solute is : (A) 0·80 (B) 0·725 (C) 0·15 (D) 0·0225
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Start your 14-day free trial to unlock the full solution →The relative lowering of vapour pressure equals the mole fraction of the solute in the solution. Given the lowering is 0.0225, the mole fraction of the non-volatile solute is directly 0.0225, which corresponds to option (D).
Why This Works: The Concept of Relative Lowering
When a non-volatile solute is dissolved in a volatile solvent, the vapour pressure of the solvent above the solution is lower than that above the pure solvent. This is a colligative property — it depends only on the number of solute particles, not their identity.
The key relationship, known as Raoult’s law for a non-volatile solute, states:
Here:
- = vapour pressure of pure solvent
- = vapour pressure of the solution
- = relative lowering of vapour pressure
- = mole fraction of the non-volatile solute in the solution
The beauty of this formula is its directness: the relative lowering is exactly equal to the mole fraction of the solute. No extra constants, no temperature dependence (as long as the solvent is the same). This is because the solute molecules occupy some of the surface sites, reducing the number of solvent molecules that can escape into the vapour phase.
A common mistake is to confuse the relative lowering with the mole fraction of the solvent. Remember: the lowering is proportional to the solute's mole fraction, not the solvent's. If you ever feel unsure, recall that for a pure solvent (no solute), the lowering is zero, and the solute mole fraction is zero — they match.
Step-by-Step Solution
- Identify the given data. The problem states: "The relative lowering of vapour pressure of an aqueous solution containing non-volatile solute is 0.0225." So, . …
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