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Q.State Henry's law. Calculate the mass of a non-volatile solute (molar mass 40 g mol^-1) which should be dissolved in 114 g of octane to reduce its vapour pressure to 80%.

Andhra Pradesh BieapBIEAP Intermediate Board 2020Subjective· 4mImportance★★★★★
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Henry's law relates a gas's partial pressure to its mole fraction in solution; solving the vapour-pressure-lowering numerical gives 10 g of solute.

Henry's law: The partial pressure (p) of a gas in the vapour phase is directly proportional to the mole fraction (x) of that gas dissolved in the solution:

p = KH . x

where KH is the Henry's law constant, which depends on the nature of the gas, the solvent, and the temperature.

Numerical: Molar mass of solute (M2) = 40 g/mol; mass of octane (solvent) = 114 g. Octane is C8H18, molar mass M1 = 8(12) + 18(1) = 114 g/mol, so moles of octane n1 = 114/114 = 1 mol.

The vapour pressure is reduced to 80% of the original, i.e. p/p_0 = 0.80, so the relative lowering of vapour pressure is:

(p_0 - p)/p_0 = 1 - 0.80 = 0.20

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