\(250 \mathrm{~g}\) solution of D-glucose in water contains\(\text { 10.8% }\)of carbon by weight. The molality of the solution is nearest to: (Given: Atomic Weights are, \(\mathrm{H}, 1 \mathrm{u} ; \mathrm{C}, 12 \mathrm{u} ; \mathrm{O}, 16 \mathrm{u}\))

1. \(1.03\)
2. \(2.06\)
3. \(3.09\)
4. \(5.40\)
Subtopic:  Introduction & Colligative properties |
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Given below are two statements : 
Assertion (A) : At \(\mathrm{10^\circ C}\), the density of a \(5~\text{M}\) solution of \(\text{KCl}\) [atomic masses of \(\text{K}\) & \(\text{Cl}\) are \(39\) & \(35.5~\text{g}~\text{mol}^{-1}\) respectively], is \(\text{‘x’} \text{g} ~\text{ml}^{–1} \). The solution is cooled to \(\mathrm{–21^\circ C.}\) The molality of the solution will remain unchanged.
Reason (R) : The molality of a solution does not change with temperature as mass remains unaffected with temperature.
 
1. Both (A) and (R) are True and (R) is the correct explanation of (A).
2. Both (A) and (R) are True but (R) is not the correct explanation of (A).
3. (A) is True but (R) is False.
4. (A) is False but (R) is True.
Subtopic:  Introduction & Colligative properties |
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The solubility of \(\mathrm{AgCl}\) will be maximum in which of the following?

1. \(\mathrm{0.01 ~M ~KCl}\)
2. \(\mathrm{0.01 ~M ~HCl}\)
3. \(\mathrm{0.01 ~M ~AgNO_3}\)
4. Deionised water
Subtopic:  Introduction & Colligative properties |
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