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Specific conductance of 0.1 M CH(3)COOH ...

Specific conductance of 0.1 M `CH_(3)COOH` at `25^(@)` C is `3.9xx10^(-4) " ohm"^(-1) "cm"^(-1)`
If `lambda^(infty)(H_(3)O^(+))` and `lambda^(infty)(CH_(3)COO^(-))` at `25^(@)`C are `349.0 and41.0 " ohm"^(-)"cm"^(2) "mol"^(-1)` respectively degree of ionisation of `CH_(3)COOH` at the given concentration is

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The specific conductance of a 0.01 M solution of acetic acid at 298K is 1.65xx10^(-4)ohm^(-1)cm^(-1) . The molar conductance at infinite dilution fo H^(+) ion and CH_(3)COO^(-) ion are 349.1 ohm^(-1)cm^(2)mol^(-1) and 40.9ohm^(-1)cm^(2)mol^(-1) respectively. Calculate : Degree of dissociation of CH_(3)COOH .

The specific conductance of a 0.01 M solution of acetic acid at 298 K is 1.65 xx 10^(-4) "ohm"^(-1)cm^(-1) . The molar conductance at infinite dilution for H^(+) ion and CH_(3)COO^(-) ion are 349.1 "ohm"^(-1) cm^(2 )"mol"^(-1) and 40.9 "ohm"^(-1) cm^(2) "mol"^(-1) respectively. Calculate : (i) Molar conductance of solution (ii) Degree of dissociation of acetic acid (iii) Dissociation constant for acetic acid.

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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 :