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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 A solute’s apparent molar mass determined from osmotic pressure is greater than its actual molar mass. What does this indicate?

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02 If the observed molar mass of KCl is \(\frac{2}{3}\) of its true molar mass, what is the value of the van’t Hoff factor \(i\)?

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03 The normal molar mass of a solute is 120 g mol⁻¹, while its observed molar mass from the osmotic-pressure method is 60 g mol⁻¹. What is the van’t Hoff factor?

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04 The experimental molar mass of a solute determined from osmotic pressure is greater than its actual molar mass. What behaviour does this mainly indicate?

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05 A solute associates to form dimers in a solution. How will this affect the observed molar mass calculated from a colligative property?

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06 Due to dissociation of an electrolyte, how is the observed molar mass generally obtained from a colligative property?

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07 In which solution will the apparent molar mass determined from colligative properties be greater than the true molar mass because of association of solute particles?

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08 The observed molar mass of a substance in benzene is found to be twice its normal molar mass. Which conclusion is correct?

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09 If the observed molar mass of a solute is half its true molar mass, what is the value of the van’t Hoff factor i?

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10 If the observed molar mass of a solute is twice its true molar mass, what is the value of the van’t Hoff factor i?

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11 In which situation is the molar-mass value called abnormal?

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12 If the true molar mass is 120 g mol^-1 and the van't Hoff factor i = 2 for a solute, what observed molar mass will be obtained from a colligative-property measurement?

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13 The true molar mass of a substance is 60 g mol^-1, but the freezing-point method gives an observed molar mass of 30 g mol^-1. What is the value of the van't Hoff factor i?

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14 If NaCl is completely dissociated and its true molar mass is 58.5 g mol^-1, what will be its ideal observed molar mass approximately?

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15 While determining molar mass by the lowering of vapour pressure method, if a solute undergoes complete dimerisation in benzene, how will its observed molar mass compare with its true molar mass?

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16 If the observed molar mass of a solute is 2/3 of its true molar mass, what is the van’t Hoff factor (i)?

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17 If the observed molar mass is 1.25 times the true molar mass, what is the van’t Hoff factor (i)?

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18 If a solute undergoes dissociation, how will the molar mass calculated without applying the van’t Hoff factor compare with the true molar mass?

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19 If a solute undergoes association, how will the molar mass obtained by a colligative-property method compare with its true molar mass?

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20 If solute AB completely dissociates into A⁺ and B⁻, the observed molar mass from the colligative method will be what fraction of the true value?

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21 If a solute forms complete dimers, the observed molar mass from the colligative method will be how many times the true value?

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22 If the normal molar mass is 120 g mol⁻¹ and the observed molar mass is 60 g mol⁻¹, what is the van’t Hoff factor?

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23 If the observed molar mass is greater than the normal molar mass, what is the simplest possible reason?

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24 If an electrolyte gives an observed molar mass lower than its normal molar mass during molar-mass determination, what is the reason?

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25 If a solute associates to form dimers, why does the molar mass obtained from colligative properties generally increase?

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