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Subjects

Chemistry

6: Molar Mass Determination

मोलर द्रव्यमान का निर्धारण

In this Class 12 Chemistry topic from Chapter 01: Solutions, students learn how the molar mass of a solute can be determined from the measurable properties of a solution. The topic connects mass, moles, concentration, and colligative properties such as relative lowering of vapour pressure, elevation of boiling point, depression of freezing point, and osmotic pressure. Students also practise selecting suitable formulas, interpreting experimental data, and recognising how observed results can indicate association or dissociation of solute particles.

Practice questions

01 Which is the correct formula for molar mass from boiling-point elevation when the masses are given in grams?

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02 Which relation helps determine molar mass by the osmotic-pressure method?

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03 If Kf = 1.86 K kg mol⁻¹, w₂ = 1 g, w₁ = 100 g, and ΔTf = 0.186 K, what is the molar mass M?

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04 If Kb = 0.52 K kg mol⁻¹, w₂ = 2 g, w₁ = 100 g, and ΔTb = 0.104 K, what is the molar mass M?

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05 Which property forms the basis for determining the molar mass of a solute using a colligative property such as freezing-point depression?

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06 When 3 g of a non-dissociated solute is dissolved in 200 g of water, ΔT_f = 0.279 K. If K_f = 1.86 K kg mol⁻¹, what is the molar mass?

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07 When 2.5 g of a non-dissociated solute is dissolved in 100 g of solvent, the boiling-point elevation is 0.13 K. If K_b = 0.52 K kg mol⁻¹, what is the molar mass of the solute?

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08 A 1.8 g sample of a non-dissociated solute is used to make 250 mL of solution. At 300 K, the osmotic pressure is 0.738 atm. If R = 0.082 L atm mol⁻¹ K⁻¹, what is the molar mass?

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09 When 4 g of a non-dissociated solute is used to prepare 500 mL of solution, its osmotic pressure at 300 K is 0.984 atm. What is the molar mass? Take R = 0.082 L atm mol⁻¹ K⁻¹.

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10 If 1.2 g of a solute forms a 0.02 m solution and the solvent mass is 0.5 kg, what is the molar mass of the solute?

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11 In a solution, 6 g of a non-dissociated solute gives a molality of 0.12 m. If the solvent mass is 0.5 kg, what is the molar mass of the solute?

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12 If 0.5 g of a solute dissolved in 50 g of water produces ΔT_f = 0.186 K, what is its molar mass when K_f = 1.86 K kg mol⁻¹?

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13 When 1.5 g of a non-dissociated solute is dissolved in 150 g of solvent, the elevation in boiling point is 0.104 K. If K_b = 0.52 K kg mol^-1, what is the molar mass of the solute?

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14 When 4 g of a non-dissociated solute is dissolved in 200 g of solvent, the elevation in boiling point is 0.104 K. If K_b = 0.52 K kg mol^-1, what is the molar mass of the solute?

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15 Which colligative property is most suitable for determining the molar mass of polymers with very high molar masses?

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16 In the osmotic pressure method, 2 g of a solute is used to prepare 1 L of solution. At 300 K, the osmotic pressure is 0.492 atm. If R = 0.082 L atm mol⁻¹ K⁻¹, what is the molar mass?

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17 A 500 mL solution is prepared from 3.6 g of a non-dissociated solute. Its osmotic pressure at 300 K is 0.738 atm. What is the molar mass?

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18 If a solution has a concentration of 0.05 M and contains 2 g of solute per 250 mL of solution, what is the molar mass?

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19 For determining the molar mass of large molecules, which method does not require measurement of very small temperature changes?

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20 Which sequence is most appropriate for determining molar mass from depression in freezing point?

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21 What is the correct sequence for determining molar mass by the osmotic-pressure method?

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22 When 1 g of a non-dissociated solute is dissolved in 100 g of water, the freezing-point depression is 0.093 K. If Kf = 1.86 K kg mol⁻¹, what is the molar mass?

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23 When 2 g of a solute is dissolved in 250 g of solvent, the boiling-point elevation is 0.052 K. If Kb = 0.52 K kg mol⁻¹, what is the molar mass?

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24 If for a solution ΔT_b = 0.208 K, K_b = 0.52 K kg mol⁻¹, and the solvent mass is 0.25 kg, how many moles of solute are present?

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25 A non-dissociated solute of mass 8 g is dissolved in 0.25 kg solvent and the molality is 0.4 m. What is the molar mass?

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