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Q.Value of Henry's constant KHK_H : (A) increases with decrease in temperature. (B) decreases with increase in temperature. (C) increases with increase in temperature. (D) remains constant.

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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Henry’s constant KHK_H measures gas solubility in a liquid. Since solubility decreases when temperature rises, KHK_H must increase with temperature. The correct option is (C).

Why Henry’s constant behaves this way

Henry’s law states that at a constant temperature, the partial pressure of a gas above a liquid is proportional to its mole fraction in the liquid:

p=KH⋅xp = K_H \cdot x

Here KHK_H is the Henry’s law constant. A larger KHK_H means that for the same mole fraction xx, the gas exerts a higher partial pressure — which implies the gas is less soluble (it prefers to stay in the vapour phase). Conversely, a smaller KHK_H means the gas dissolves more readily.

So KHK_H is an inverse measure of solubility: high KHK_H → low solubility; low KHK_H → high solubility.

How temperature affects solubility — and therefore KHK_H

  1. Think about dissolving a gas. When a gas dissolves in a liquid, the process is generally exothermic (heat is released). This is because gas molecules must be surrounded by solvent molecules, and the new intermolecular attractions release energy.

  2. Le Chatelier’s principle. For an exothermic dissolution, heat is a product:

Gas+solvent⇌solution+heat\text{Gas} + \text{solvent} \rightleftharpoons \text{solution} + \text{heat}

Raising the temperature adds heat, which shifts the equilibrium backward — toward the undissolved gas. So solubility decreases as temperature rises.

  1. Connect to KHK_H. Since KHK_H is inversely related to solubility, a decrease in solubility means KHK_H must increase. Every textbook example confirms this: for oxygen in water, KHK_H roughly doubles when going from 0 °C to 40 °C. …

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