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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 Which observation most directly supports a higher molar mass caused by association?

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Answer and explanation

02 In a solution, MgCl2 is 85% dissociated. What is the value of i?

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03 At the same molality, a solution has a freezing-point depression 0.6 times that of a normal solute. What is its observed molar mass relative to the true molar mass?

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04 If 0.04 mol of AB3 undergoes complete dissociation, how many moles of effective particles are produced?

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05 In which situation is i most likely to be much greater than 1?

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06 If a 1:1 electrolyte has i = 1.72, what is its percentage dissociation?

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07 If Na2SO4 is 90% dissociated, what is its van’t Hoff factor, i?

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08 In a solution, 0.03 mol solute forms 0.045 mol effective particles. What are i and the likely behaviour?

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09 Which statement correctly gives the cause of abnormal molar mass?

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10 For an AB2 salt, i = 1.1 is obtained. What is the safest conclusion?

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11 In a solution, 0.02 mol solute gives 0.015 mol effective particles after association. What is i?

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12 Which option gives the correct limiting value of i for complete dimerisation?

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13 A substance has a true molar mass of 72 g mol−1 and i = 2.4. What is its observed molar mass?

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14 If the molar mass obtained by osmotic pressure is lower than the true molar mass, which conclusion is most suitable?

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15 The molar mass determined from osmotic pressure is greater than the true molar mass. Which phenomenon does this indicate?

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16 If a solute is normally undissociated and does not undergo association, what should the van’t Hoff factor be by all four colligative methods?

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17 Which option gives the correct relation for m-fold association?

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18 If the osmotic pressure of a solute is 20% lower than the normal value, what are i and the likely cause?

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19 A student sees i < 1 and writes dissociation. What is the correct correction?

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