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[" Molar conductance of "BaCl(2),H(2)SO(...

[" Molar conductance of "BaCl_(2),H_(2)SO_(4)" and "HCl_(" at ")],[" infinite dilutions are "x_(1),x_(2)" and "x_(3)," respectively."],[" Equivalent conductance of "BaSO_(4)" at infinite "],[" dilution will be: "]

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Molar conductances of BaCl_(2), H_(2)SO_(4) and HCl at infinite dilution are and X_(1),X_(2) , and X_(3) respectively. Molar conductance of BaSO_(4) at infinte dilution is

Molar conductivities of BaCl_(2), H_(2)SO_(4) and HCl at infinite dilution are x_(1) and x_(2), and x_(3) respectively. Molar conductivity of BaSO_(4) at infinite dilution will be

wedge^(@)._(m) of BaCl_(2) , H_(2)SO_(4) , and HCl(aq) solutions are x_(1),x_(2), and x_(3) respectively. wedge_(m(BaSO_(4))) is :

Equivalent conductances of NaCl, HCl and CH_(3)COONa at infinite dilution are 126.45, 426.16 and 91 ohm^(-1) cm^(2) eq^(-1) respectively. The equivalent conductance of CH_(3)COOH at infinite dilution would be :

Ionic conductance of H^(+) and SO_(4)""( 2–) at infinite dilution are x and y S "cm"^(2)" equiv "^(–1) . Hence, equivalent conductance of H_(2) SO_(4) at inifinite dilution will be:

The molar conductance of NaCl, HCl and CH_(3)COONa at infinite dilution are 126.45, 426.16 and 91 ohm^(-1) cm^(2) mol^(-1) respectively. The molar conductance of CH_(3)COOH at infinite dilution is :

The molar conductance of NaCl, HCl and CH_(3)COONa at infinite dilution are 126.45, 426.16 and 91 ohm^(-1) cm^(2) mol^(-1) respectively. The molar conductance of CH_(3)COOH at infinite dilution is :