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The osmotic pressure of a solution conta...

The osmotic pressure of a solution containing 0.2 mol of solute per litre at 323 K is

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The correct Answer is:
`K_(b)` for `X=0.68,K_(b)` for `Y=0.53` and `K_(b)` for `Z=0.98`.

`K_(b)=(RT_(b)^(2).M)/(1000xxDeltaH_(v))=(RT_(b).M)/(1000xxDeltaS_(v))`
Since, during vaporsiation entropy increases because randomness increases and thus `DeltaS_("vap")=S_(v)-S_(L)=+ve`. Also `DeltaS_("vap")` is almost constant for liquid `hArr` vapour even if the extent of disordemess varies from liquid to liquid because `DeltaS_("vap")` is very high. Thus, if `M` and `R` and constants, `K_(b)propT_(b)`.
Thus, `K_(b)` for `X=0.68, K_(b)` for Y=0.53` and `Z=0.98`.
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