The vapour pressures of two liquids P and Q are 80 and 60 torr respectively. The total vapour pressure of solution obtained by mixing 3 moles of P and 2 moles of Q would be:
| 1. | 140 torr | 2. | 20 torr |
| 3. | 68 torr | 4. | 72 torr |
A set of solutions is prepared using 180 g of water as a solvent and 10 g of different non-volatile solutes A, B and C. What is the correct order of relative lowering of vapour pressure in the presence of these solutes?
[Given: Molar mass of A = 100 g ; B = 200 g ; C = 10,000 g ]
| 1. | A > B > C | 2. | A > C > B |
| 3. | C > B > A | 4. | B > C > A |
At room temperature, a dilute solution of urea is prepared by dissolving 0.60 g of urea in 360 g of water. If the vapour pressure of pure water at this temperature is 35 mm Hg, then calculate the lowering of vapour pressure:
(Given: Molar mass of urea = 60 g mol–1)
| 1. | 0.031 mmHg | 2. | 0.017 mmHg |
| 3. | 0.028 mmHg | 4. | 0.027 mmHg |