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Q.The value of Henry's constant KHK_H is : (A) greater for gases with higher solubility (B) greater for gases with lower solubility (C) constant for all gases (D) not related to the solubility of gases

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Henry’s constant KHK_H is inversely related to gas solubility — a higher KHK_H means lower solubility. So the correct option is (B).

Why Henry’s Law works this way

Henry’s Law describes the relationship between the partial pressure of a gas above a liquid and its concentration in the liquid. The law is written as:

p=KH⋅xp = K_H \cdot x

where pp is the partial pressure of the gas, xx is its mole fraction in the solution, and KHK_H is Henry’s constant.

The key intuition: KHK_H is essentially a resistance to dissolution. A gas that dissolves easily (high solubility) will need only a small partial pressure to achieve a given concentration — so KHK_H is small. Conversely, a gas that barely dissolves (low solubility) needs a large partial pressure to force even a tiny amount into solution — so KHK_H is large.

p=KH⋅x⇒KH=pxp = K_H \cdot x \quad \Rightarrow \quad K_H = \frac{p}{x}

Step-by-step reasoning

  1. Interpret the equation For a fixed partial pressure pp, the mole fraction xx of the dissolved gas is x=p/KHx = p / K_H. Since pp is constant, xx (which measures solubility) is inversely proportional to KHK_H:

x∝1KHx \propto \frac{1}{K_H}

  1. Relate KHK_H to solubility

    • High solubility → large xx → small KHK_H
    • Low solubility → small xx → large KHK_H
  2. Check the options

    • (A) says KHK_H is greater for gases with higher solubility — this is the opposite of what we just found.
    • (B) says KHK_H is greater for gases with lower solubility — this matches the inverse relationship. …

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