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A solution of two liquids A and B showin...

A solution of two liquids A and B showing a large negative deviation from ideal behaviour have

A

higher boilint point than both the components

B

`DeltaH_("mixing")` is negative

C

`DeltaV_("mixing")` is negative

D

A.........B interactions are stronger than A........A and B........B interactions.

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The correct Answer is:
A, B, C, D

A solution of two volatile liquids showing a large negative deviation have higher boiling point than both the compounts, `DeltaH_("mixing")` is negative, `DeltaV_("mixing")` is negative, A…..B interactions are stronger than A….A and B….B interaction.
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DINESH PUBLICATION-SOLUTIONS -OBJECTIVE TYPE MCQs
  1. Ideal solution is formed when its components

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  2. A solution showing a large positive deviation from ideal behaviour hav...

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  3. A solution of two liquids A and B showing a large negative deviation f...

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  4. In the depression of freezing point experiment, it is found that the:

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  5. An azeotropic solution of two liquids has a boiling point lower than e...

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  6. A liquid is in equilibrium with its vapour at its boiling point . On a...

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  7. A molal solution is one that contains one mole of a solute in

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  8. When mercuric iodide is added to the aqueous solution of potassium iod...

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  9. In which mode of expression, the concentration of a solution remains i...

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  10. The freezing point among the following equimolal aqueous solutions wil...

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  11. Osmotic pressure of a solution is 0.0821 atm at a temperature of 300 K...

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  12. Increasing the temperature of an aqueous solution wil case

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  13. The vapour pressure of a solution of 5g of non-electrolyte in 100g of ...

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  14. How many moles of Fe^(2+) ions are formed when excess iron is treated ...

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  15. The van't Hoff factor for 0.1M Ba(NO(3))(2) solution is 2.74. The degr...

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  16. An aqueous solution of 6.3 g oxalic acid dihydrate is made up to 250 m...

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  17. During depression of freezing point in a solution, the following are i...

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  18. A 0.004M solution of Na(2)SO(4) is isotonic with a 0.010M solution of ...

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