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Subjects

Chemistry

5: Colligative Properties

5: अणुसंख्यात्मक गुणधर्म

In Class 12 Chemistry, Chapter 01: Solutions, this topic introduces colligative properties—properties that depend on the number of dissolved solute particles rather than their chemical identity. Students learn relative lowering of vapour pressure, elevation of boiling point, depression of freezing point, and osmotic pressure for dilute solutions. The topic also develops relationships involving molality, concentration, molar mass, and the van’t Hoff factor, helping students understand the behaviour of electrolytes and the calculation of abnormal molar masses.

Practice questions

01 For a solution, \(\Delta T_b\) is larger. With the same solvent and the same \(K_b\), what is the most suitable meaning?

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02 If the value of \(K_f\) is the same in all cases, in which option will the depression in freezing point be greatest?

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03 If the molality of a non-electrolyte solution is 0.5 mol kg⁻¹ and the ebullioscopic constant is K_b = 0.52 K kg mol⁻¹, what is the elevation in boiling point, ΔT_b?

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04 For a solution with van’t Hoff factor i = 0.5, cryoscopic constant K_f = 2 K kg mol⁻¹, and molality m = 1 mol kg⁻¹, what is the depression in freezing point, ΔT_f?

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05 Assuming complete dissociation, which of the following aqueous solutions of equal molality will have the lowest freezing point?

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06 Why should a solution be very dilute when determining molar mass by the osmotic pressure method?

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07 If NaCl is 60% dissociated in a solution, what is the value of the van't Hoff factor i?

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08 For a non-dissociated solute, the elevation in boiling point is given by ΔT_b = K_bm. If the same solute dissociates 50% into two ions, what is the van’t Hoff factor, i?

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09 If a 0.2 molal non-dissociating solute produces a certain depression in freezing point, what will be the ideal depression in freezing point for a 0.2 molal NaCl solution?

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10 If Al₂(SO₄)₃ dissociates completely into ions in dilute aqueous solution, what is the ideal value of the van’t Hoff factor (i)?

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11 What is the osmotic pressure of a \(0.05\,\mathrm{M}\) \(\mathrm{CaCl_2}\) solution at \(300\,\mathrm{K}\), assuming complete dissociation? Take \(R=0.082\,\mathrm{L\,atm\,mol^{-1}\,K^{-1}}\).

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12 If the observed van’t Hoff factor for \(\mathrm{Ca(NO_3)_2}\) is \(i=2.6\), what is its degree of dissociation? Assume that association is negligible.

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13 If the freezing point of a solution is 1.86 K lower than that of the pure solvent and Kf = 1.86 K kg mol−1, what is the molality of the non-dissociated solute?

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14 Which of the following statements about the osmotic pressure of a dilute solution is correct?

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15 In which situation will the observed molar mass of a solute be less than its true molar mass?

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16 In which solution is the van’t Hoff factor likely to be less than 1 because of association of solute molecules?

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17 A solute AB is 70% dissociated in solution. If AB dissociates as AB → A⁺ + B⁻, what is the van’t Hoff factor i?

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18 In a solution of an unknown solute, the van’t Hoff factor (i) is found to be much greater than 1. What is the most suitable explanation?

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19 What molarity of a CaCl₂ solution will be isotonic with a 0.3 M glucose solution, if CaCl₂ is assumed to dissociate completely?

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20 A 0.2 mol kg⁻¹ aqueous Na₂SO₄ solution is 50% dissociated. What is its effective molality, expressed as the total concentration of solute particles?

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21 Among aqueous solutions of equal molality, assuming complete dissociation, which will show the greatest depression in freezing point?

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22 A 0.1 m non-dissociated solution has a boiling-point elevation of 0.052 K. What will be the boiling-point elevation of a 0.1 m K₂SO₄ solution in the same solvent on complete dissociation?

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23 Among aqueous solutions of equal molality, assuming complete dissociation, which solution will show the greatest depression in freezing point?

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24 Assuming complete dissociation, which of the following aqueous solutions of equal molality will show the greatest depression in freezing point?

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25 A 0.1 M glucose solution and a 0.1 M NaCl solution are separated by a semipermeable membrane. If NaCl is completely dissociated, toward which solution will the net flow of water occur?

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