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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 a closed vessel, surface area of a liquid is increased while temperature is kept constant. What is the final effect on equilibrium vapour pressure?

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02 If all liquid in a closed vessel has completely converted into vapour, which caution about vapour pressure is correct?

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03 According to Raoult's law, what is the nature of graph between total vapour pressure and liquid composition for an ideal binary solution?

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04 In an ideal solution, components A and B are volatile. The liquid mole fraction of A increases. If the pure vapour pressure of A is lower than that of B, in which direction will the total pressure move?

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05 Which statement related to vapour pressure is the most exam-useful and correct?

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06 In an ideal solution, what is the most correct reason for the lowering of partial vapour pressure of the solvent?

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07 For an ideal liquid mixture, how is the graph between total vapour pressure and composition generally shaped?

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08 Which solution is more likely to form a minimum-boiling azeotrope?

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09 Which solution is more likely to form a maximum-boiling azeotrope?

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10 If the mole fraction of the solvent in a solution is 0.8 and the vapour pressure of the pure solvent is 50 units, what will be the solvent’s partial vapour pressure in an ideal solution?

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11 What useful indication can vapour-pressure measurement of a solution provide?

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12 Which pair is more likely to form an ideal solution?

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13 In which situation is direct use of Raoult's law safest?

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14 In an ideal solution, if pure vapour pressure of component A is higher than that of component B, which component generally contributes more to vapour phase when mole fractions are equal?

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15 At constant temperature and fixed total amount of liquid, in an ideal solution, what happens to the total vapour pressure when the amount of the less volatile component is increased?

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16 Why is heat change on forming an ideal solution considered nearly zero?

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17 How can boiling of a liquid at hill stations be explained using vapour pressure and external pressure?

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18 In an ideal binary solution, the pure vapour pressure of component A is 240 kPa and that of component B is 80 kPa. The mole fraction of A is 0.25. What is the total vapour pressure?

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19 In a volatile binary ideal solution, the partial pressure of component A is 45 kPa and that of component B is 15 kPa. What is the mole fraction of A in the vapour phase?

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20 In which situation is formation of a minimum boiling azeotrope more likely?

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21 In which situation is formation of a maximum-boiling azeotrope more likely?

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22 If all liquid in a closed vessel is exhausted and only vapour remains, which statement about pressure is correct?

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23 In an ideal binary solution, the pure vapour pressures of components A and B are 50 kPa and 150 kPa, respectively. If the mole fraction of A is 0.7, what is the total vapour pressure?

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24 In an ideal solution, what is the relation between total vapour pressure and liquid composition?

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25 What is the most important difference between vapour pressure and rate of evaporation?

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