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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 solution has i = 1.75. Which statement is definitely correct?

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02 The apparent molar mass is 72 g mol⁻¹. If i = 1.5, what is the true molar mass?

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03 An unknown solute has i = 4. Which cause is most suitable?

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04 A solution shows i = 1.9. Which situation matches this value?

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

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06 For a solute, i = 5/4. If it dissociates into two ions, what is the degree of dissociation?

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07 Assume 80% dissociation of AlCl₃. What is the value of i?

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08 A solution has van't Hoff factor i = 1.05. Which explanation is most appropriate?

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09 A solute has i = 1.25. What is the ratio of its apparent molar mass to its true molar mass?

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10 A student calculates the molar mass of AlCl3 by assuming i = 1, although the actual i is 3.4. What is the apparent molar mass relative to the true molar mass?

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11 In an ideal dilute solution, the molar mass measured from osmotic pressure is half the true molar mass. What is the most suitable conclusion about the solute particles?

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12 Benzoic acid is nearly dimerised in benzene. How will its molar mass measured by freezing-point depression compare with its true molar mass?

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13 A 1:1 electrolyte is 80% dissociated. What is its van’t Hoff factor?

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14 An AB₂ salt undergoes 60% dissociation. What is its van’t Hoff factor in dilute solution?

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15 If a solute has i = 0.5, which statement about its particles is correct?

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16 A substance has a true molar mass of 120 g mol⁻¹, while the molar mass measured by the freezing-point method is 180 g mol⁻¹. What is i?

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17 If Kf and the measured masses are correct, but the freezing-point depression is greater than expected, what is the most likely cause of the abnormal molar mass?

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18 A solute undergoes 40% dimerisation. What is its van’t Hoff factor?

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19 Which observation best represents abnormal molar mass caused by association?

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20 If a solute has i = 1.25 and dissociates into two ions, what is its degree of dissociation?

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21 For a non-electrolyte with neither association nor dissociation, what is the value of i?

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22 If the Kb method gives molar mass 40 g mol−1 while the true value is 58.5 g mol−1, what is the most suitable reason?

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23 An acid dimerises in benzene due to hydrogen bonding. Which statement gives the correct effect?

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24 A salt A₂B is 25% dissociated. Find the value of i.

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25 If M_obs > M_true for a solute, which statement about i is correct?

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