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NCERT Exemplar · Q17

Q.What will be the correct order of vapour pressure of water, acetone and ether at 30°C. Given that among these compounds, water has maximum boiling point and ether has minimum boiling point?

(i) Water < ether < acetone
(ii) Water < acetone < ether
(iii) Ether < acetone < water
(iv) Acetone < ether < water
Meghalaya MboseMCQ· 1mImportance★★★★★
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Vapour pressure and boiling point are inversely related — the compound with the lowest boiling point has the highest vapour pressure. Since ether has the minimum boiling point and water the maximum, the order of vapour pressure is water < acetone < ether, which is option (ii).

Why Boiling Point Tells You Vapour Pressure

The key idea is simple: boiling point is the temperature at which the vapour pressure of a liquid equals the surrounding atmospheric pressure. At any fixed temperature (here, 30°C), a liquid with a lower boiling point is already closer to its boiling condition — meaning it has a higher vapour pressure at that temperature. Conversely, a liquid with a higher boiling point has stronger intermolecular forces holding its molecules together, so fewer molecules escape into the vapour phase, giving a lower vapour pressure.

So the relationship is:

Boiling point↑⟹Vapour pressure at a given T↓\text{Boiling point} \uparrow \quad \Longrightarrow \quad \text{Vapour pressure at a given } T \downarrow

This is an inverse proportionality, not a linear one, but the direction is rock-solid.

Step-by-step reasoning

  1. Identify the given boiling-point order. The problem states: water has the maximum boiling point, ether has the minimum boiling point. Acetone lies in between. So:

Boiling point: Water>Acetone>Ether\text{Boiling point: Water} > \text{Acetone} > \text{Ether}

  1. Apply the inverse relationship. Since vapour pressure at a fixed temperature is inversely related to boiling point, the order of vapour pressure is exactly the reverse: …

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