MCQ
Which condition is not satisfied by an ideal solution?
- A$\Delta _{mix} V = 0$
- ✓$\Delta _{mix} S = 0$
- CObeyance to Raoult's Law
- D$\Delta _{mix} H = 0$
$\Delta_{\operatorname{mixing}} \mathrm{H}=0 ; \Delta_{\operatorname{mixing}} \mathrm{V}=0$
and it should obey Raoult's law.
Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.
$T{i^{4 + }} + e \to T{i^{3 + }},\,{E^o} = - xV$,
$F{e^{3 + }} + e \to F{e^{2 + }},\,{E^o} = - yV$,
$\{$ where $x < y$ point out the wrong statement

(Given ${\Delta _{fus}}H = 6\, kJ\, mol^{-1}$ at $0\,^oC$,
$C_p(H_2O, l) =75.3\, J\, mol^{-1} \, K^{-1}$ ,
$C_p(H_2O, s) = 36.8\, J\, mol^{-1} \, K^{ -1}$ )