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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 A solution of volume \(500\,\mathrm{mL}\) is prepared using \(1.5\,\mathrm{g}\) of solute. Its osmotic pressure at \(300\,\mathrm{K}\) is \(0.615\,\mathrm{atm}\). If \(R=0.082\,\mathrm{L\,atm\,mol^{-1}\,K^{-1}}\), what is the molar mass of the solute?

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02 When \(3.2\,\mathrm{g}\) of a solute is dissolved in \(400\,\mathrm{g}\) of water, the depression in freezing point is \(0.186\,\mathrm{K}\). Taking \(K_f=1.86\,\mathrm{K\,kg\,mol^{-1}}\), what is the molar mass of the solute?

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03 When \(2\,\mathrm{g}\) of a non-dissociating solute is dissolved in \(100\,\mathrm{g}\) of solvent, the boiling-point elevation is \(0.208\,\mathrm{K}\). If \(K_b=0.52\,\mathrm{K\,kg\,mol^{-1}}\), what is the molar mass of the solute?

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04 A \(1\,\mathrm{L}\) solution is prepared from \(6\,\mathrm{g}\) of solute. Its osmotic pressure at \(300\,\mathrm{K}\) is \(1.23\,\mathrm{atm}\). The solute is non-dissociating. What is its molar mass?

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05 If the true molar mass of NaCl is 58.5 g mol⁻¹ and the colligative-property method gives an observed molar mass of 39 g mol⁻¹, what is the approximate van’t Hoff factor, i?

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06 If the observed molar mass of an AB-type solute is 5/8 of its true molar mass, what is the degree of dissociation?

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07 The true molar mass of CaCl₂ is 111 g mol⁻¹. If its observed molar mass is 55.5 g mol⁻¹, what is the degree of dissociation?

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08 A substance forms trimers. If its van’t Hoff factor is i = 0.6, what is the degree of association?

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09 The observed molar mass of an AB₂-type solute is half of its true molar mass. What is the degree of dissociation?

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10 A student mistakenly uses 200 g of solvent as 200 kg while calculating molar mass from a colligative-property measurement. What will happen to the calculated molar mass?

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11 When 2.0 g of a solute is dissolved in 250 g of water, the freezing-point depression is 0.372 K. If the solute has i = 2, what is its true molar mass? Take Kf for water as 1.86 K kg mol−1.

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12 A 100 mL solution is prepared from 1.0 g of a solute. At 300 K, its osmotic pressure is 0.615 atm and i = 1.25. What is the true molar mass of the solute?

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13 A non-dissociating solute weighing 4.8 g is dissolved in 300 g of water and produces a freezing-point depression of 0.372 K. What is the molar mass of the solute? Take Kf = 1.86 K kg mol−1.

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14 When 2.7 g of a solute is dissolved in 150 g of solvent, the boiling-point elevation is 0.156 K. If Kb = 0.52 K kg mol−1 and the solute is non-electrolytic, what is its molar mass?

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15 If 250 mL of a 0.01 M solution contains 0.75 g of solute, what is the molar mass of the solute?

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16 An unknown solute forms 750 mL of a 0.02 M solution and the solution contains 2.7 g of the solute. What is its molar mass?

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17 If 1.86 g of a non-electrolyte solute dissolved in 100 g of water produces a depression in freezing point of 0.186 K, what is its molar mass? Take K_f = 1.86 K kg mol⁻¹.

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18 For a non-dissociated solute, K_f = 1.86 K kg mol⁻¹ and ΔT_f = 0.558 K. If 6 g of solute is dissolved in 250 g of solvent, what is its molar mass?

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19 If the elevation in boiling point is 0.312 K, K_b = 0.52 K kg mol⁻¹, the solvent mass is 100 g, and the solute mass is 3 g, what is the molar mass of the non-dissociated solute?

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20 A 125 mL sample of a 0.04 M solution contains 0.9 g of solute. What is the molar mass of the solute?

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21 If a 0.05 m solution is prepared by dissolving 2.4 g of solute in 400 g of solvent, what is the molar mass of the solute?

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22 A solute has a van’t Hoff factor of \(i=1.25\) and an observed molar mass of \(80\,g\,mol^{-1}\). What is its true molar mass?

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23 A solute has a van’t Hoff factor of \(i=0.75\) and an observed molar mass of \(160\,g\,mol^{-1}\). What is its true molar mass?

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24 An \(AB\)-type solute is 25% dissociated. If its observed molar mass is \(80\,g\,mol^{-1}\), what is its true molar mass?

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25 A solute has an observed molar mass of \(72\,g\,mol^{-1}\). If its van’t Hoff factor is \(i=1.5\), what is its true molar mass?

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