Which of the following is true when components forming an ideal solution are mixed?

  • A
    $\Delta H_{mix} = \Delta V_{mix} = 0$
  • B
    $\Delta H_{mix} > \Delta V_{mix}$
  • C
    $\Delta H_{mix} < \Delta V_{mix}$
  • D
    $\Delta H_{mix} = \Delta V_{mix} = 1$

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Which of the following liquid mixtures shows a positive deviation from Raoult's law?

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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:

At $27^{\circ} C$,two liquids $A$ and $B$ form an ideal solution with mole fractions $0.67$ and $0.33$ respectively. If the vapour pressure of pure $A$ and $B$ at $27^{\circ} C$ are $300 \ mm$ and $450 \ mm$ respectively,the total vapour pressure of the solution in $mm$ is:

Liquids $A$ and $B$ form an ideal solution. At $30\,^oC$,the total vapour pressure of a solution containing $1\,mol$ of $A$ and $2\,mol$ of $B$ is $250\,mm\,Hg$. The total vapour pressure becomes $300\,mm\,Hg$ when $1$ more $mol$ of $A$ is added to the first solution. The vapour pressures of pure $A$ and $B$ at the same temperature are

For an ideal binary liquid mixture,which of the following conditions is true?

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