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Aqueous solution of barium phosphate whi...

Aqueous solution of barium phosphate which is `100%`ionised has `DeltaT_(f)//K_(f)`as 0.05.Hence ,given solution is

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Aqueous solution of braium phosphate which is 100% ionised has DeltaT_(f)//Delta K_(f) as 0.05 Hence , given solution is :

If 0.1 m aqueous solution of calcium phosphate is 80% dissociated then the freezing point of the solution will be (K_f of water = 1.86K kg mol^(-1))

If 0.1 m aqueous solution of calcium phosphate is 80% dissociated then the freezing point of the solution will be ( K_f of water = 1.86K kg mol^(-1))

Aluminium phosphate is 100% ionised in 0.01 molal aqueous solution,Hence, DeltaT_(b)//K_(b) is :

Aluminium phosphate is 100\% ionised in 0.01 molal aqueous solution . Hence , DeltaT_(b) // K_(b) is :

An aqueous solution of a solute AB has b.p of 101.08^(@)C (AB is 100% ionised at boiling point of the solution ) and freezes at -1.80^(@)C . Hence , AB ( K_(b) //K_(f) = 0.3) :

An aqueous solution of a solute AB has b.p. of 101.08^(@)C( AB is 100% ionised at boiling point of the solution ) and freezes at -1.80 ^(@)C . Hence, AB(K_(b)//K_(f)=0.3)

An aqueous solution of a solute AB has b.p. of 101.08^(@)C( AB is 100% ionised at boiling point of the solution ) and freezes at -1.80 ^(@)C . Hence, AB(K_(b)//K_(f)=0.3)

0.2 molal aqueous solution of acid HX is 20% ionised. K_f="1.86 K molal"^(-1) . The freezing point of the solution is very close to: