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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 In the study of abnormal molar mass, i = 1 + α may apply to which situation?

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02 If a substance is 50% dissociated into two ions, what will be the value of i?

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03 If i = 1.2 and the solute dissociates into two ions, what is the degree of dissociation?

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04 If the observed molar mass is less than the actual molar mass, which process is most likely?

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05 If the observed molar mass is greater than the actual molar mass, in which range will i lie?

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06 Which example can be linked with association in abnormal molar mass?

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07 Which example may show abnormal molar mass due to dissociation?

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08 If i = 2 and the observed molar mass is 40 g mol⁻¹, what is the normal molar mass?

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09 If the actual molar mass is 90 g mol⁻¹ and the observed molar mass is 45 g mol⁻¹, what is i?

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10 If the actual molar mass is 60 g mol⁻¹ and the observed molar mass is 120 g mol⁻¹, what is i?

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11 If a solute completely dissociates into three ions, what fraction of the actual molar mass is the observed molar mass?

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12 If four molecules completely associate to form one larger particle, what will be the value of i?

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13 If a solute has an observed molar mass of 25 g mol⁻¹ and a normal molar mass of 50 g mol⁻¹, what behaviour does it show?

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14 If a solute has an observed molar mass of 100 g mol⁻¹ and a normal molar mass of 50 g mol⁻¹, which process is likely?

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15 In abnormal molecular-mass problems, which is the correct relation between i and molecular mass?

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16 Why does acetic acid show abnormal molecular mass in benzene?

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17 If a substance completely forms dimers, what will be the value of i?

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18 If i = 0.5, how does the observed molecular mass compare with the normal molecular mass?

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19 If i = 2, how is the observed molecular mass related to the normal molecular mass?

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20 For an AB-type salt, what is the simple relation between the van’t Hoff factor i and the degree of dissociation α?

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21 If i = 1.6 for NaCl, what is the degree of dissociation?

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22 If the van’t Hoff factor, i, for a substance that can produce two ions lies between 1 and 2, what does this indicate?

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23 If a solute forms dimers and its van’t Hoff factor, i, lies between 0.5 and 1, what is the conclusion?

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24 Why do substances like benzoic acid often show abnormal molar mass in benzene?

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25 If normal molar mass is 60 g mol−1 and observed molar mass is 30 g mol−1, what is i?

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