\(d\, = \,M\,\left( {\frac{1}{m}\, + \,\frac{{{M_2}}}{{1000}}} \right)\,,\,{M_2}\, = \) Mol. mass of solute
On putting value
\(1.252\, = \,3\left( {\frac{1}{m}\, + \,\frac{{58.5}}{{1000}}} \right)\)
on solving \(m\,=\,2.79\)The relation between molarity \((M)\) and molality \((m)\) is
\(d\, = \,M\,\left( {\frac{1}{m}\, + \,\frac{{{M_2}}}{{1000}}} \right)\,,\,{M_2}\, = \) Mol. mass of solute
On putting value
\(1.252\, = \,3\left( {\frac{1}{m}\, + \,\frac{{58.5}}{{1000}}} \right)\)
on solving \(m\,=\,2.79\)
(પાણી માટે $K_f =1.86\, K\, kg\,mol^{-1}$ છે )