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Q.What do you understand by elevation in boiling point? Boiling point of a liquid is 350 K. On dissolving 2.0 g of a non-volatile solute in 100 g liquid, the boiling point of solution becomes 350.50 K. Calculate the molar mass of the solute. KbK_b for the liquid is 2.50 K kg mol−12.50\ K\ kg\ mol^{-1}.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2023Subjective· 4mImportance★★★★★
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A non-volatile solute lowers the vapour pressure, so the solution must be heated higher to boil — this rise, ΔTb=Kb m\Delta T_b = K_b\,m, is the elevation in boiling point. Using it, M2=100 g mol−1M_2 = 100\ g\ mol^{-1}.

Concept — elevation in boiling point: A liquid boils when its vapour pressure equals atmospheric pressure. Adding a non-volatile solute lowers the vapour pressure of the solvent, so a higher temperature is needed to reach atmospheric pressure. The increase in boiling point, ΔTb=Tb−Tb∘\Delta T_b = T_b - T_b^{\circ}, is a colligative property:

ΔTb=Kb m\Delta T_b = K_b\, m

where KbK_b is the molal elevation (ebullioscopic) constant and mm the molality.

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