Q.The value of Henry's constant is _____________.
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Start your 14-day free trial to unlock the full solution →Henry's constant measures how reluctant a gas is to dissolve: the larger , the higher the pressure needed to force a given amount into solution, meaning lower solubility. The answer is (ii).
Henry's Law connects the partial pressure of a gas above a liquid to its concentration (or mole fraction) in the liquid at equilibrium. The law is usually written as
where is the partial pressure of the gas, is its mole fraction in solution, and is Henry's constant for that particular gas–solvent pair at a given temperature.
The key insight is to understand what means physically. Rearranging the equation gives
This tells us that for a fixed partial pressure , a larger produces a smaller mole fraction in solution. In other words, you need more pressure to dissolve the same amount of gas when is large. That's the signature of a gas that doesn't want to dissolve easily—low solubility.
Conversely, a gas with high solubility dissolves readily even at low pressure, which corresponds to a small .
Henry's constant is the ratio of partial pressure to mole fraction; high means high pressure is needed for a given dissolved amount.
Let's walk through the options:
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Option (i): greater for gases with higher solubility.
If a gas is highly soluble, a small pressure suffices to dissolve a large amount, so is large for small . That makes small, not large. This contradicts the claim.
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Option (ii): greater for gases with lower solubility.
A poorly soluble gas requires high pressure to achieve even a modest mole fraction in solution. The ratio is therefore large, meaning is large. This matches our physical reasoning perfectly. …
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