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Subjects

Chemistry

4: Vapour Pressure

वाष्प दाब

In this Class 12 Chemistry topic from Chapter 01: Solutions, students learn how vapour pressure arises from the dynamic equilibrium between evaporation and condensation in a liquid. The topic explains the effect of temperature and the presence of a non-volatile solute, including lowering of vapour pressure. Students also connect vapour pressure with mole fraction through Raoult’s law and examine how ideal and non-ideal solutions differ, using equations and basic numerical applications.

Practice questions

01 In an ideal solution, what happens to the solvent’s partial vapour pressure when its mole fraction decreases?

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02 A solution has lower vapour pressure than the pure solvent. Which conclusion is most appropriate?

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03 The vapour pressure of pure solvent is 64 kPa and that of the solution is 48 kPa. What is the mole fraction of the solute if the solute is non-volatile?

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04 In an ideal solution of two volatile liquids, pure vapour pressure of component A is higher than that of component B. At equal mole fractions, which will be richer in vapour?

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05 If the vapour pressure of a real solution is greater than the value predicted by Raoult's law, what type of deviation is it?

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06 Why does the escaping tendency of molecules decrease in a solution showing negative deviation?

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07 A solution has solvent mole fraction 0.85 and pure solvent vapour pressure 40 kPa. What is the vapour pressure of the solution?

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08 Under which condition is the equilibrium vapour pressure of a liquid properly established?

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09 Why does equilibrium vapour pressure not change when the amount of liquid is halved if some liquid still remains?

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10 In an ideal solution, pure vapour pressure of component A is 180 kPa and its liquid mole fraction is 0.20. What is the partial pressure of component A?

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11 If the partial pressures of components A and B are 20 kPa and 80 kPa, respectively, what is the mole fraction of A in the vapour phase?

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12 Why can total vapour pressure be higher than the ideal value in a solution showing positive deviation?

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13 Which statement is not correct for an ideal solution?

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14 What is relative lowering of vapour pressure equal to when the solute is non-volatile?

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15 If the mole fraction of the solute is 0.30 and the vapour pressure of the pure solvent is 70 kPa, what is the vapour pressure of the solution, assuming the solute is non-volatile?

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16 Why does a liquid start boiling at lower temperature when external pressure is reduced?

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17 Why does the boiling point of a solution increase due to lowering of vapour pressure?

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18 Which mixture is likely to form a maximum boiling azeotrope?

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19 Which mixture is more likely to form a minimum boiling azeotrope?

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20 In an ideal binary solution, the mole fraction of component A is 0.40 and the vapour pressure of pure component B is 120 kPa. What is the partial pressure of B?

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21 Which difference between vapour pressure and rate of evaporation is correct?

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22 A liquid has high vapour pressure. Which inference about its intermolecular forces is correct?

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23 A liquid has low vapour pressure. Which statement about its boiling point is generally correct?

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24 Which option gives the correct mathematical meaning of Raoult's law?

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25 If more non-volatile solute is added to a solution, what happens to the vapour pressure of the solvent?

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