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Subjects

Chemistry

5: Colligative Properties

समष्टिगत गुणधर्म

In this Class 12 Chemistry topic from Chapter 01: Solutions, students learn how the physical properties of a solution depend on the number of dissolved solute particles rather than their chemical identity. The topic explains lowering of vapour pressure, elevation of boiling point, depression of freezing point and osmotic pressure. Students also apply colligative-property equations to calculate molar mass, understand dilute solutions, and use the van’t Hoff factor to interpret association or dissociation of solute particles.

Practice questions

01 If the observed depression in freezing point is greater than the value expected for a non-electrolyte because of ionisation, what is the van’t Hoff factor, i?

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02 If the observed elevation in boiling point, ΔT_b, is less than the value expected for a non-electrolyte, which process is most likely responsible?

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03 Which solution will show the greatest elevation in boiling point at the same molality, assuming complete dissociation and comparable solvent conditions?

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04 Why is the osmotic-pressure method particularly useful for determining the molar mass of large molecules?

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05 If a cell is placed in a hypertonic solution, in which direction will the net movement of water occur?

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06 If two solutions are separated by a semipermeable membrane and have equal osmotic pressure at the same temperature, what will happen?

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07 Why must temperature be expressed in kelvin in the osmotic-pressure equation π = iCRT?

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08 If the effective number of solute particles in a solution increases, what happens to the lowering of vapour pressure?

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09 Why does the boiling point of a solution become higher than that of the pure solvent when a non-volatile solute is added?

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10 Why is the freezing point of a solution lower than that of the pure solvent?

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11 If 0.1 mol of a non-electrolyte solute is dissolved in 200 g of solvent and K_f = 1.8 K kg mol⁻¹, what is the depression in freezing point, ΔT_f?

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12 If 0.2 mol of a non-electrolyte solute is dissolved in 400 g of solvent and K_b = 0.5 K kg mol⁻¹, what is the elevation in boiling point, ΔT_b?

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13 Which statement gives the correct understanding of colligative properties?

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14 If a solute completely dissociates into three ions in solution, what is the ideal van’t Hoff factor, i?

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15 If two non-electrolyte solutions have the same molality and the same solvent, how will their ΔT_f values compare?

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16 If two solutions have the same molality but the solute ionises in one of them, which solution will show the greater colligative effect?

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17 In a numerical problem on colligative properties, what should be done first to obtain the correct answer?

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18 Two solutions have the same osmotic pressure at the same temperature. If both are ideal dilute solutions, which statement is correct?

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19 Why does the vapour pressure of a solvent decrease when a non-volatile solute is added?

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20 Among aqueous solutions of equal molality, assuming complete dissociation, which solute will produce the greatest depression in freezing point?

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21 In a solution, the van’t Hoff factor of KCl is 1.8. If ideal complete dissociation gives a value of 2, what does this value indicate?

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22 Among the following solutions of equal molality in the same solvent, which will have the lowest freezing point if dissociation is complete?

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23 For a solution, Δp/p⁰ = 0.02. Assuming a very dilute solution with a non-volatile solute, what is the approximate mole fraction of the solute?

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24 If a 0.2 m glucose solution has ΔT_f = 0.372 K, what will be the approximate ΔT_f of a 0.2 m NaCl solution in the same solvent, assuming complete dissociation?

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25 If the boiling point elevation of a solution is greater than the expected value, what could be a possible reason?

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