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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 A 0.05 M solution has the same osmotic pressure as a 0.10 M urea solution. At the same temperature, what is the van’t Hoff factor of that solute?

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02 In which of the following situations is the van’t Hoff factor i expected to be less than 1?

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03 Solution A contains 0.1 m glucose and solution B contains 0.1 m completely dissociated NaCl. Which solution will have the higher boiling point?

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04 A solute is found to have a van’t Hoff factor (i) equal to 0.5. What is the most likely explanation?

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05 A solution contains 18 g of glucose in 1 kg of water. The molar mass of glucose is 180 g mol⁻¹ and Kf = 1.86 K kg mol⁻¹. What is the depression in freezing point?

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06 A solution has a freezing-point depression of 0.372 K. In the same solvent and at the same molality, if the solute completely forms dimers, what will be the new freezing-point depression?

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07 Which solution will have the highest osmotic pressure if all have molarity 0.1 M, the temperature is the same, and dissociation is complete?

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08 If the mole fraction of the solute in a solution is 0.05 and the vapour pressure of the pure solvent is 100 mmHg, what is the approximate vapour pressure of the solution, assuming the solute is non-volatile?

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09 A 0.2 m solution of a nonelectrolyte has ΔTb = 0.102 K. In the same solvent, what will be the approximate ΔTb of a 0.1 m completely dissociated NaCl solution?

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10 Which solution will have the lowest freezing point if all have molality 0.1 m and dissociation is complete?

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11 In a solution, the observed molar mass of a solute is half of its normal value. What is its van’t Hoff factor (i)?

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12 Two solutions are separated by a semipermeable membrane. The left side contains 0.2 M glucose, and the right side contains 0.1 M completely dissociated NaCl. What is the net flow of water?

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13 Which of the following colligative properties decreases as the number of solute particles in a solution increases?

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14 If 25% of the molecules of a solute associate to form trimers, what is its van’t Hoff factor?

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15 Solutions A and B contain the same amount of solute. Solution A contains 500 g of solvent, whereas solution B contains 1000 g of solvent. Which solution has the greater depression in freezing point?

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16 Which colligative property is most suitable for determining the molar mass of high-molar-mass proteins?

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17 Which colligative property is most suitable for determining the molar mass of a high-molar-mass solute such as a protein in a very dilute solution?

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18 Which relation is correct for a dilute solution containing a non-volatile solute?

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19 For which solution is the van’t Hoff factor i most likely to be less than 1?

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20 A solution contains 5 g of solute in 100 g of solvent. If the same amount of solute is dissolved in 200 g of solvent, what happens to the depression in freezing point?

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21 For a solution, i = 2.5 and molality is 0.2 m. If Kf = 1.86 K kg mol⁻¹, what is ΔTf?

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22 Which pair will produce nearly the same depression in freezing point at the same molality if both salts are completely dissociated?

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23 The molar mass obtained by the boiling-point elevation method is higher than the true molar mass. What is the most common reason?

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