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Subjects

Chemistry

7: Abnormal Molecular Mass

असामान्य आणविक द्रव्यमान

In this Class 12 Chemistry topic from Chapter 01: Solutions, students learn why the experimentally determined molecular mass of a solute may differ from its expected value. The discussion connects abnormal molecular mass with the association or dissociation of solute particles in solution and explains how these changes affect colligative properties. Students also explore the van’t Hoff factor and use it to interpret and calculate corrected molar masses in solution-based problems.

Practice questions

01 If an A₂B-type solute is 60% dissociated, what is the van’t Hoff factor?

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02 A substance has normal molar mass 150 and van’t Hoff factor 1.5. What is its observed molar mass?

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03 A solute has normal molar mass 80 and observed molar mass 160. Which process is possible?

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04 A solute has normal molar mass 56 and observed molar mass 28. What is the most suitable explanation?

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05 A solute completely dimerises in solution. If its true molar mass is M, what apparent molar mass is obtained from freezing-point depression?

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06 An electrolyte AB is 60% dissociated into A⁺ and B⁻. What is its van’t Hoff factor?

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07 A solute has true molar mass 120 g mol⁻¹ and apparent molar mass 80 g mol⁻¹. What is its van’t Hoff factor?

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08 A salt MX₂ is 75% dissociated. Since it gives three ions on complete dissociation, what is its van’t Hoff factor?

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09 The apparent molar mass of a solute is double its true molar mass. What is the most suitable explanation?

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10 A solute has i = 0.75. If it only forms dimers, what is the degree of association?

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11 A weak electrolyte XY has i = 1.25 and gives two ions. What is its degree of dissociation?

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12 A solute forms trimers and 60% of its molecules become associated. What is the van’t Hoff factor?

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13 For a solution with K_f = 2.0 K kg mol⁻¹, molality 0.20 mol kg⁻¹, and observed ΔT_f = 0.60 K, what is i?

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14 If K_b = 0.52 K kg mol⁻¹, m = 0.50 mol kg⁻¹, and observed ΔT_b = 0.39 K, what is i?

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15 An AB₂ salt has i = 2.2. What is its degree of dissociation?

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16 A solute has i = 3.4 and is an electrolyte of type XY₄. What is its degree of dissociation?

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17 A solute forms tetramers. If the degree of association is 50%, what is the value of i?

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18 In a solution, 30% of the solute molecules form dimers. What is the value of i?

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19 If CaCl₂ undergoes 80% dissociation in a solution, what is the value of i?

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20 If AlCl₃ is 50% dissociated, what is its van’t Hoff factor?

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21 A solute should normally show a freezing-point depression of 0.48 K, but the observed value is 0.24 K. If it forms only dimers, what is the degree of association?

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22 A solute A has 25% of its particles forming A₄. What is the value of i?

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23 In which solution is the apparent molar mass most likely to be the lowest?

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24 In which case will the apparent molar mass be the highest?

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25 Twenty percent of a solute’s particles form dimers and 80% remain as single particles. Starting with 100 particles, what is the effective number of particles?

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