Home
Class 12
CHEMISTRY
Partial pressure of a solution component...

Partial pressure of a solution component is directly proportional to its mole fraction. This statement is known as

A

Henry's law

B

Raoult's law

C

Distribution law

D

Ostwald's dilution law

Text Solution

Verified by Experts

The correct Answer is:
B

According to Raoult.s law
`P_(A) or x_(A) and P_(B) != x_(A)` for a henuary solution of A and B
Promotional Banner

Topper's Solved these Questions

  • SOLUTIONS

    PHYSICS WALLAH|Exercise LEVEL-2|31 Videos
  • SOLUTIONS

    PHYSICS WALLAH|Exercise NEET PAST 5 YEARS QUESTIONS |7 Videos
  • REDOX REACTIONS

    PHYSICS WALLAH|Exercise LEVEL-1|40 Videos
  • STATES OF MATTER

    PHYSICS WALLAH|Exercise NEET PAST 5 YEARS QUESTIONS |14 Videos

Similar Questions

Explore conceptually related problems

The osmotic pressure of a solution is directly proportional to

Pressure is directly proportional to

________ states that for a solution of volatile liquids, the partial vapour pressure of each component of the solution is directly proportional to its mole fraction present in solution

Read the passage given below and answer the following questions : Raoult's law states that for a solution of volatile liquids, the partial vapour pressure of each component of the solution is directly proportional to its mole fraction present in solution. Dalton's law of partial pressure states that the total pressure P_("total") over the solution phase in the container will be the sum of the partial pressures of the components of the solution and is given as: P_("total") = P_1 + P_2 Which of the following aqueous solutions should have the highest boiling point ?

Read the passage given below and answer the following questions : Raoult's law states that for a solution of volatile liquids, the partial vapour pressure of each component of the solution is directly proportional to its mole fraction present in solution. Dalton's law of partial pressure states that the total pressure P_("total") over the solution phase in the container will be the sum of the partial pressures of the components of the solution and is given as: P_("total") = P_1 + P_2 In comparison to a 0.01 M solution of glucose, the depression in freezing point of a 0.01 M MgCl_2 solution is _ ___