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Subjects

Chemistry

7: Abnormal Molecular Mass

असामान्य आणविक द्रव्यमान

In Class 12 Chemistry, the topic Abnormal Molecular Mass explains why the molar mass calculated from colligative properties may differ from the actual molecular mass. Students learn how solute particles associate, such as through dimerisation, or dissociate into ions in solution, changing the number of particles present. They use the van’t Hoff factor to relate these changes to relative lowering of vapour pressure, elevation of boiling point, depression of freezing point and osmotic pressure, and calculate the degree of association or dissociation in solutions.

Practice questions

01 In which solution can i be less than 1?

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02 For partial dissociation of FeCl₃, the van’t Hoff factor is 3.1. What is the approximate degree of dissociation?

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03 An AB₃ salt has an apparent molar mass of 50 g mol⁻¹ and a true molar mass of 125 g mol⁻¹. What is the degree of dissociation?

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04 A solute gives a much higher apparent molar mass from both boiling-point elevation and freezing-point depression. What does this suggest?

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05 A solute has i = 0.875 and forms only dimers. Out of 200 initial particles, how many particles participate in dimer formation?

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06 An A₂B salt is 65% dissociated. What is the van’t Hoff factor?

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07 The observed osmotic pressure is 0.80 times the normal value. If the solute forms dimers, what is the degree of association?

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08 An electrolyte XY₂ has an apparent molar mass equal to 0.625 times its true molar mass. What is the degree of dissociation?

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09 A solute has i = 0.70 and forms only tetramers. What is the approximate degree of association?

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10 For a 0.20 mol kg⁻¹ solution, Kf = 1.5 K kg mol⁻¹ and the observed freezing-point depression is 0.45 K. If the solute dissociates into two ions, what is the degree of dissociation?

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11 An acid has an apparent molar mass of 150 g mol⁻¹ in benzene, while its true molar mass is 90 g mol⁻¹. If only dimers form, what is the degree of association?

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12 A salt MX₃ is 70% dissociated. What fraction of its true molar mass is its apparent molar mass?

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13 A colligative property is 45% higher than its normal value. If the solute is AB₂, what is the degree of dissociation?

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14 A solution has i = 1.9. If the solute is AB₃, what is the degree of dissociation?

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15 The lowering of vapour pressure is 1.6 times the normal value. If the solute dissociates into two ions, what is the degree of dissociation?

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16 Thirty-six percent of solute A forms A₃. What is the value of i?

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17 The osmotic pressure of a 0.05 M electrolyte at 300 K is 2.46 atm. Take R = 0.082 L atm mol⁻¹ K⁻¹. What is i?

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18 If Kb = 0.80 K kg mol⁻¹, m = 0.25 mol kg⁻¹, and the observed boiling-point elevation is 0.10 K, what is i and what does it indicate?

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19 Out of 100 initial AB₃ units, 25 units dissociate. What is the total number of effective particles?

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20 A solute has i = 0.625 and forms only tetramers. What is the degree of association?

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21 Seventy-five percent of a solute forms dimers. What are i and the observed colligative property relative to normal?

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22 A solution has i = 2.5. Which situation matches this value?

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23 For Na₂SO₄, i = 2.2. What is the approximate degree of dissociation?

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24 A colligative property is 0.40 times the normal value. If the solute forms only trimers, what is the degree of association?

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25 An AB₄ electrolyte is 30% dissociated. What is the value of i?

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