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[" Molar conductivities "(Lambda_(n)^(@))" at infinite dilution "],[" of "NaCl_(1)" ,"HCl" and "CH_(3)" COON are "120.4,425.],[" and "M.0S" ."m^(2)" mol "^(-1)" respectively."(Lambda_(n)^(0))" for "],[CH_(3)COOH" will be "]

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Molar conductivities (Lambda_(m)^(@)) at infinite dilution of NaCl, HCl and CH_(3)COONa arc 126.4, 425.9 and 91.0 S cm^(2) mol^(-1) respectively. Lambda_(m)^(@) for CH_(3)COOH will be

Molar conductivities (Lambda_(m)^(@)) at infinite dilution of NaCl, HCl and CH_(3)COONa arc 126.4, 425.9 and 91.0 S cm^(2) mol^(-1) respectively. Lambda_(m)^(@) for CH_(3)COOH will be

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lambda_(m)^(@) for NaCl, HCl and CH_(3)COONa are 126.4,425.9 and "91.0 S cm"^(2)//"mol" respectively. Calculate lambda_(m)^(@)" for "CH_(3)COOH .

Molar conductiveiy [Lambda _m] at infinite dilution of Na CL, HCl and CH_3 COONa are 126.4, 425, 9 and 91 0 S cm^2 "mol"^(-1) respectively, Lambda_m for CH_3COOH will be ,

If molar conductivities (Lambda_m^0) at infinite dilution of KBr, HBr and CH_3COOK are 151.6, 427.7 and 114.4 S cm^2 mol ^(-1) respectively then (Lambda_m^0) for CH_3COOH will be

If molar conductivities (Lambda_m^0) at infinite dilution of KBr, HBr and CH_3COOK are 151.6, 427.7 and 114.4 S cm^2 mol ^(-1) respectively then (Lambda_m^0) for CH_3COOH will be

If the molar conductivities at infinited dilution of NaCl, HCl and CH_(3)COONa are 126.4, 426.1 and 91.0 ohm^(-1) cm^(2) mol^(-1) respectively. What will be the that of acetic acid?