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Q.The mole fraction of a solute in 2.02.0 molal aqueous solution is : (A) 1.871.87 (B) 0.3470.347 (C) 0.03470.0347 (D) 0.003470.00347

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
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A 2.0 molal solution means 2 moles of solute in 1 kg of water. Convert the solvent mass to moles, then apply the mole fraction formula: χsolute=nsolutensolute+nsolvent\chi_{\text{solute}} = \frac{n_{\text{solute}}}{n_{\text{solute}} + n_{\text{solvent}}}. The answer is 0.0347\boxed{0.0347}.

Molality is defined as moles of solute per kilogram of solvent, not per kilogram of solution. This distinction matters because we need to count the moles of both solute and solvent separately to find the mole fraction.

When we say a solution is 2.0 molal, we're saying there are 2.0 moles of solute dissolved in exactly 1000 g (1 kg) of water. The mole fraction then asks: what fraction of the total number of particles (molecules) in the solution comes from the solute?

Let me work through the calculation systematically.

1. Identify what we know from "2.0 molal aqueous solution"

The molality m=2.0m = 2.0 tells us:

  • Moles of solute: nsolute=2.0 moln_{\text{solute}} = 2.0 \text{ mol}
  • Mass of water (solvent): 1000 g1000 \text{ g}

2. Convert the mass of water to moles

Water has a molar mass of 18 g/mol18 \text{ g/mol}, so:

nwater=1000 g18 g/mol=55.56 moln_{\text{water}} = \frac{1000 \text{ g}}{18 \text{ g/mol}} = 55.56 \text{ mol}

3. Calculate the total moles in the solution

ntotal=nsolute+nwater=2.0+55.56=57.56 moln_{\text{total}} = n_{\text{solute}} + n_{\text{water}} = 2.0 + 55.56 = 57.56 \text{ mol}

4. Apply the mole fraction formula

The mole fraction of solute is:

χsolute=nsolutentotal=2.057.56=0.03474\chi_{\text{solute}} = \frac{n_{\text{solute}}}{n_{\text{total}}} = \frac{2.0}{57.56} = 0.03474 …

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