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Question 70 of 70

Q.(a)

(i) Define the term "Isotonic solution".
(2)
(ii) Define Ideal Gas Equation.
(3) OR
(b) Derive the relation between Kp and Kc. (5)
Puducherry TnboardTamil Nadu HSC First Year (DGE) Board 2026Subjective· 5mImportance★★★★★est
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This is a 5-mark either/or question; both alternatives are worked out below.

(a) Isotonic solutions have equal osmotic pressure at the same temperature, and the ideal gas equation is PV = nRT; (b) the relation between the equilibrium constants is Kp = Kc(RT)^Δng.

PART (a)(i) — Isotonic solution:

Two solutions are said to be isotonic if they exert the same osmotic pressure at the same temperature. When such solutions are separated by a semipermeable membrane, there is no net flow of solvent from one to the other (they have equal solute-particle concentration). Solutions of higher osmotic pressure are hypertonic, and those of lower osmotic pressure are hypotonic, relative to one another.

PART (a)(ii) — Ideal gas equation:

The ideal gas equation is PV = nRT, where P = pressure, V = volume, n = number of moles of the gas, R = universal gas constant (8.314 J mol^-1 K^-1) and T = absolute temperature. It is obtained by combining Boyle's law (V ∝ 1/P), Charles's law (V ∝ T) and Avogadro's law (V ∝ n), giving V ∝ nT/P, i.e. PV = nRT. It describes the state of an ideal gas.

PART (b) — Relation between Kp and Kc:

Consider a general gaseous equilibrium: aA + bB ⇌ cC + dD.

Kp is expressed in terms of partial pressures and Kc in terms of molar concentrations:

Kp = (pC^c · pD^d) / (pA^a · pB^b); Kc = ([C]^c [D]^d) / ([A]^a [B]^b). …

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