The plot of osmotic pressure \((\pi)\) vs concentration \((mol L^{-1})\) for a solution gives a straight line with slope 25.73 L bar mol-1. The temperature at which osmotic pressure measurement is done is: \((\text {Use} \left.\mathrm{R}=0.083 \mathrm{~L} \mathrm{bar} \mathrm{mol}^{-1} \mathrm{~K}^{-1}\right)\)
1. 310°C
2. 25.73°C
3. 12.05 °C
4, 37°C
Subtopic:  Osmosis & Osmotic Pressure |
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Which of the following pair of aqueous solutions will have the same value of osmotic pressure? (Assume complete dissociation in aqueous solution)

1. \(0.1~ \mathrm{M}~ \mathrm{BaCl}_2 \text { and } 0.2 ~\mathrm{M} ~\mathrm{K}_2 \mathrm{SO}_4\)
2. \(0.1~ \mathrm{M}~ \mathrm{Na}_3 \mathrm{PO}_4 \text { and } 0.1 ~\mathrm{M}~ \mathrm{K}_2 \mathrm{SO}_4\)
3. \(0.2~ \mathrm{M}~ \mathrm{NaCl} \text { and } 0.1 ~\mathrm{M} ~\mathrm{K}_2 \mathrm{SO}_4\)
4. \(0.2 ~\mathrm{M} ~\mathrm{NaCl} \text { and } 0.1~ \mathrm{M} ~\mathrm{K}_3\left[\mathrm{Fe}(\mathrm{CN})_6\right]\)
Subtopic:  Osmosis & Osmotic Pressure |
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The following solutions were prepared by dissolving 10 g of glucose (C6H12O6) in 250 ml of water (P1), 10 g of urea (CH4N2O) in 250 ml of water (P2) and 10 g of sucrose (C12H22O11) in 250 ml of water (P3). The decreasing order of osmotic the pressure of these solutions is:

1. P2 > P3 > P1 2. P3 > P1 > P2
3. P2 > P1 > P3 4. P1 > P2 > P3
Subtopic:  Osmosis & Osmotic Pressure |
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Isotonic solutions have the same:

1. Vapour pressure

2. Freezing temperature

3. Osmotic pressure

4. Boiling temperature

Subtopic:  Osmosis & Osmotic Pressure |
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