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An ideal solution follows Raoult's law o...

An ideal solution follows Raoult's law over all ranges of concentrations and pressure.

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Name the solution which follows Raoult's law all concentrations and temperatures.

What are the conditions for an ideal solution which obeys Raoult's law over the entire range of concentration ?

An ideal solution is that which ______ over the entire range of concentration .

A solution that obeys Raoult’s law is:

The solution , which obeys Roult's law over the entire range of concentration , at a given temperature is called a /an ________ solution .

Assertion: Dilute solutions are taken as ideal solutions. Reason: The solutions which follow the Raoult's law at any temperature and concentration are known as ideal solution.Most of the solution show the deviation from Raoult's law.

CENGAGE CHEMISTRY-SOLUTIONS-Exercise (True/False)
  1. For a solution of AlCl(3) in water, the Van't Hoff factor (i) is grea...

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  2. For a non-ideal solution, Delta(mix)V and Delta(mix)H are zero.

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  3. Mixture of HNO(3) and HCl is an example of maximum boiling point azeot...

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  4. Hypertonic solutions have same osmotic pressure.

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  5. The solubility of gas in liquid is directly proportional to the pressu...

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  6. Colligative properties depend upon the amount fraction of solute in so...

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  7. Isotonic solutions have different osmotic pressure.

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  8. For the same solution the elevation in boiling point has higher values...

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  9. On hills, water boils quickly.

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  10. An ideal solution follows Raoult's law over all ranges of concentratio...

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  11. For electrolytic solution, the Van't Hoff factor (i) is always equals ...

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  12. The sum of mole fraction of all components of a solution is unity.

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  13. The liquid pair of acetone-chloroform shows a positive deviation form ...

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  14. The phenol-water system has a upper critical solution temperature.

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  15. A solution of ethyl alcohol and water shows positive deviation from Ra...

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  16. Addition of impurity into water lowers the freezing point of water.

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  17. Azeotropic mixtures can be separated by distillation of solution.

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  18. Raoult's law is for solvent and Henry's law is for solute.

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  19. In association of solute, the Van't Hoff factor is greater than unity.

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