$\Delta {T_b}\,\, = \,\,\frac{w}{{m\,\, \times \,\,W}}\,\, \times \,\,1000\,\, \times \,\,{K_b},$
${K_b}\,\, = \,\,\frac{{\Delta {T_b}\, \times \,\,m\,\, \times \,\,W}}{{1000\,\, \times \,\,w}}$
$\Delta \,\,{T_b}\,\, = \,\,0.1\,^oC\,,\,\,m\,\, = \,\,180,\,\,$
$W\,\, = \,\,100\,,\,w\,\, = \,\,1.8\,$
${K_b}\,\, = \,\,\frac{{180\,\, \times \,\,0.1\,\, \times \,\,100}}{{1000\,\, \times \,1.8}}\,\, = \,\,1.0$
$(M.wt.$ of $CuCl_2 =134.4 $ અને $K_b = 0.52\, , molal^{-1})$