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87.3 Applications of Conductivity Measurement 2. Measure the ioniza bility and dissociation constant a B a+ B C 0 c(1-a) c a M=C,,F(U+ +U)C+=ac A=a(u+UF Arrhenius suggested that the degree of At infinite dilution dissociation of an electrolyte can be m=F(U+ +U-) calculated using molar conductivity Am-a(U+ +U)F (++U)F2. Measure the ionizability and dissociation constant m c Z F U U ( ) c  + + + − + = c+ =c m  = + ( ) U U F + − At infinite dilution m  F U U ( )    = + + − m m ( ) ( ) U U F U U F     + −    + − + = = + Arrhenius suggested that the degree of dissociation of an electrolyte can be calculated using molar conductivity. §7.3 Applications of Conductivity Measurement
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