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Q.Osmotic pressure is a colligative property and it is proportional to the molarity of solution.

a) What is osmotic pressure?
(1)
b) Molecular mass of NaCl determined by osmotic pressure measurement is found to be half of the actual value. Account for it.
(1)
c) Calculate the osmotic pressure exerted by a solution prepared by dissolving 1.5 g of a polymer of molar mass 185000 in 500 ml of water at 37°C. [R = 0.0821 L atm K⁻¹ mol⁻¹]. (2)
Kerala DhseKerala DHSE Plus Two Board 2014Subjective· 4mImportance★★★★★
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Osmotic pressure is the pressure that stops solvent flow across a semipermeable membrane; dissociation of NaCl doubles the particle count, halving the apparent molar mass; and π = (w/M)RT/V gives 4.13 × 10⁻⁴ atm for the polymer solution.

a) Osmotic pressure

Osmotic pressure (π) is the excess hydrostatic pressure that must be applied on the solution side to just prevent the net flow (osmosis) of solvent molecules into the solution through a semipermeable membrane, when the solution is separated from the pure solvent by that membrane. It is a colligative property, given by π = CRT, where C is the molarity of the solution.

b) Why NaCl's apparent molar mass is half

Osmotic pressure (like other colligative properties) depends on the total NUMBER of solute particles present in solution, not on the number of formula units dissolved. NaCl is a strong electrolyte and dissociates almost completely in water:

NaCl → Na+ + Cl-

So 1 mole of NaCl produces close to 2 moles of particles in solution (van't Hoff factor i ≈ 2). Since the osmotic pressure measured is therefore about twice what would be expected for a non-dissociating solute of the same molality, when this π is used in the formula M = wRT/(πV) (which assumes no dissociation), the calculated molar mass comes out to be half the actual (formula) molar mass of NaCl.

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