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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 The normal molar mass of a solute is 180 g mol⁻¹, while its observed molar mass in solution is 72 g mol⁻¹. If the solute is of the type AB₂, what is the degree of dissociation?

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02 FeCl₃ is 60% dissociated. If its observed molar mass is 81.25 g mol⁻¹, what is its true molar mass?

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03 A solute has an observed molar mass of 72 g mol⁻¹. If it is of A₂B type and is 40% dissociated, what is its true molar mass?

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04 If the true molar mass of a solute is 180 g mol⁻¹ and 30% dimerization occurs, what will be the approximate observed molar mass?

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05 An acid dimerises in benzene. The expected freezing-point depression is 0.50 K, but the observed value is 0.30 K. What is the approximate degree of association?

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06 AB₃ undergoes 40% dissociation into A³⁺ and three B⁻ ions. What fraction of the true molar mass is the apparent molar mass?

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07 Two solutions have the same molality. In the first, the solute completely dimerises; in the second, it completely dissociates into two ions. What is the ratio of their freezing-point depressions?

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08 A solute has i = 0.40 and forms only trimers. What is the approximate degree of association?

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09 A 0.01 M solution has an osmotic pressure of 0.369 atm at 27°C. Taking R = 0.082 L atm mol⁻¹ K⁻¹, what is the approximate value of i?

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10 The apparent molar mass of a solute is 0.40 times its true molar mass. If it dissociates into three ions, what is the degree of dissociation?

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11 An acid has true molar mass 60 g mol⁻¹ and apparent molar mass 96 g mol⁻¹ in benzene. If it only forms dimers, what is the approximate degree of association?

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12 Forty percent of a solute’s particles form dimers and 30% form trimers. The rest remain single. What is i?

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13 An acid has a true molar mass of 122 g mol−1, but its apparent molar mass in benzene is 200 g mol−1. If only dimers form, what is the approximate degree of association?

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14 Twenty percent of a solute’s particles form dimers and 40% form tetramers. The rest remain single. What is i?

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15 Ten percent of a solute forms dimers, 30% forms trimers, and 20% forms tetramers; the rest remains single. What is i?

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16 A solute undergoes 60% trimerisation, meaning that three molecules combine to form one particle. What is the value of the van’t Hoff factor i?

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17 An AB₄ salt is 20% dissociated. What is the value of the van’t Hoff factor i?

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18 Under identical conditions, a solute has an osmotic pressure equal to 0.75 times the expected value. How is its observed molar mass related to the true molar mass?

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19 Which statement correctly explains the abnormal molar mass of carboxylic acids in benzene?

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20 If i = 2.8 and the solute can give three ions on complete dissociation, what is the approximate degree of dissociation?

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21 A substance has a van’t Hoff factor, i = 0.6, and undergoes only dimerisation. What is the degree of dimerisation?

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22 In a solution, solute A undergoes 30% tetramerisation, meaning that four molecules combine to form one particle. What is the value of i?

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23 The observed molar mass of an acid in benzene is 180 g mol⁻¹, whereas its true molar mass is 120 g mol⁻¹. If only dimerisation occurs, what is the degree of dimerisation?

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24 For a 1:2 electrolyte, the observed molar mass is 5/8 of the true molar mass. What is the degree of dissociation?

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25 A substance has i = 0.4 and undergoes only m-fold association. If the association is complete, what is the value of m?

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