The reaction $1/2 H_{2(g)} + AgCl_{(s)} \to H^{+}_{(aq)} + Cl^{-}_{(aq)} + Ag_{(s)}$ occurs in the galvanic cell:

  • A
    $Ag | AgCl_{(s)}, KCl_{(soln)} || AgNO_{3(soln)} | Ag$
  • B
    $Pt | H_{2(g)}, HCl_{(soln)} || AgNO_{3(soln)} | Ag$
  • C
    $Pt | H_{2(g)}, HCl_{(soln)} || AgCl_{(s)} | Ag$
  • D
    $Pt | H_{2(g)}, KCl_{(soln)} || AgCl_{(s)} | Ag$

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$(1)$ In a galvanic cell,the anode and cathode possess $\dots$ and $\dots$ charge respectively.
$(2)$ According to convention,the anode and cathode in a galvanic cell are present on the $\dots$ and $\dots$ side respectively.

Which of the following changes takes place at the positive electrode during the recharging of a lead accumulator?

$A$ hypothetical electrochemical cell is shown below.
$A \,|\, A^{+} \,(x \ M)\, ||\, B^{+} \,(y \ M)\, |\, B$
The $emf$ measured is $+ 0.20 \ V.$ The cell reaction is

Assertion : If $\lambda^o_{Na^{+}}$ and $\lambda^o_{Cl^{-}}$ are molar limiting conductivity of sodium and chloride ions respectively,then the limiting molar conductivity for sodium chloride is given by the equation :
$\Lambda^o_{NaCl} = \lambda^o_{Na^{+}} + \lambda^o_{Cl^{-}}$
Reason : This is according to Kohlrausch law of independent migration of ions.

When a lead storage battery is charged:

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