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Specific conductance is the conductance ...

Specific conductance is the conductance of ........ the solution:

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The resistance of an N/10 KCl solution is 245 ohms. Calculate the specific conductance and the equivalent conductance of the solution if the electrodes in the cell are 4 cm apart and each having an area of 7.0 sq cm.

The resistance of a N//10 KCI solution is 245 ohms. Calculate the specific conductance and the equivalent conductance of the solution if the electrodes in the cell are 4 cm apart and each having an area of 7.0 sq cm.

Knowledge Check

  • Specific conductance is more for

    A
    `1M C_(6)H_(12)O_(6)`
    B
    `1 M KCl`
    C
    `1 M C_(12) H_(22) O_(11)`
    D
    1 M Urea
  • If the specific conductance and conductance of a solution are same, then its cell constant is equal to:

    A
    1
    B
    0
    C
    10
    D
    100
  • Statement-1: Specific conductivity of an electrolytic solution decreases with dilution whereas molar conductivity. Statement-2: Specific conductivity is the conductance of a specific amount of the electrolyte whereas molar conductivity is for 1 mole of the electrolyte.

    A
    Statement-1 is True, statement-2 is true, statement-2 is a correct explanation of statement-1
    B
    Statement-1 is true, statement-2 is true, statement-2 is not a correct explanation of statement-1.
    C
    Statement-1 is true, statemet-2 is false
    D
    Statement-1 is false, statement-2 is true
  • Similar Questions

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    (a) Define the terms conductivity and molar conductivity for the solution of an electrolyte. Comment on their variation with temperature (b) The measured resistance of a conductance cell was 100 ohms. Calculate (i) the specific conductance and (ii) the molar conductance of the solution (KCl=74.5 g mol^(-1) and cell constant =1.25 cm^(-1))

    The measured resistance of a conductivity cell containing 7.5xx10^(-3) M solution of KCl at 43^(@) C was 1005 ohms. Calculate (a) Specific conductance (b) Molar conductance of the solution. Given cell constant =1.25 cm^(-1) .

    The measured resistance of a conductance cell containing 7.5xx10^(-3)M solution of KCl at 25^(@)C was 1005 ohms. Calculate (a) specific conductance (b) molar conductance of the solution. Cell constant=1.25 cm^(-1) .

    The resistance of a 0.01N solution of an electroyte was found to 210 ohm at 298K using a conductivity cell with a cell constant of 0.88 cm^(-1) . Calculate specific conductance and equilvalent conductance of solution.

    The specific conductance and equivalent conductance of a saturated solution of BaSO_(4) are 8xx10^(-5)ohm^(-1)cm^(-1) and 8000 ohm^(-1)cm^(2)"equi"^(-1) respectively. Hence K_(sp) of BaSO_(4) is