For a solution made of two liquids $A$ and $B$,if $P_A < P_A^o X_A$ and $P_B < P_B^o X_B$,then this solution..........

  • A
    will have a lower boiling point than expected
  • B
    will release heat upon formation
  • C
    will show positive deviation
  • D
    the $A-B$ intermolecular interaction will be weaker than $A-A$ and $B-B$

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Similar Questions

In a binary ideal solution of liquids $A$ and $B$ at a constant temperature,the mole fraction of $B$ in the liquid phase is $0.4$ and in the vapor phase is $0.25$. If $P_B^o = 40 \ mm \ Hg$,then the vapor pressure of pure liquid $A$ at that temperature is .......... $mm \ Hg$.

Two statements are given below:
Statement-$I$: Liquids $A$ and $B$ form a non-ideal solution with positive deviation. The interactions between $A$ and $B$ are weaker than $A-A$ and $B-B$ interactions.
Statement-$II$: For an ideal solution,$\Delta_{mix} H = 0$ and $\Delta_{mix} V = 0$.
The correct answer is:

$2 \ moles$ each of liquids $A$ and $B$ are dissolved to form an ideal solution. What will be the mole fraction of $B$ in the vapour phase? Given: $P_A^o = 120 \ torr, P_B^o = 80 \ torr$

Which one of the following is a non-ideal solution?

Liquids $A$ and $B$ form an ideal solution. Which of the following statements is true?

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