Home
Class 12
CHEMISTRY
If P^(@) and P(s), the V.P. of solvent a...

If `P^(@)` and `P_(s)`, the V.P. of solvent and solution respectively and `N_(1)` and `N_(2)` are the mole fraction of solvent then :

A

`P_(s) = P^(@)N_(2)`

B

`P^(@) - P_(s) = P^(@)N_(2)`

C

`P_(s) = P^(@)N_(1)`

D

`((P^(@)- P_(s)))/(P_(s)) = ((N_(1))/(N_(2)))`

Text Solution

Verified by Experts

The correct Answer is:
B, C
Promotional Banner

Topper's Solved these Questions

  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 38|4 Videos
  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 40|4 Videos
  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 25|8 Videos
  • IONIC EQUILIBRIUM

    GRB PUBLICATION|Exercise All Questions|526 Videos
  • METALLUGY

    GRB PUBLICATION|Exercise Subjective type|1 Videos

Similar Questions

Explore conceptually related problems

If P^(@) and P_(S) are the vapour pressure of the solvent and solution respectively, n_(1) and n_(2) are the mole fractions of the solvent and solute respectively, then:

If p^(@) and p_(a) are the vapour pressures of the solvent and solution respectively and n_(1) and n_(2) are the mole fractions of solvent and solute respectively. Then,

If P^(@) and P_(s) are vapour pressure of solvent and its solution, respectively, chi_(1) and chi_(2) are mole fractions of solvent and solute, respectively, then

If P^(@) and P_(5) are the vapour pressure of the solvent and its solution respectively and x_(1) and x_(2) are the mole fraction of the solvent and solute respectively, then