When a galvanometer is shunted with a $4\,\Omega$ resistance,the deflection is reduced to one-fifth. If the galvanometer is further shunted with a $2\,\Omega$ wire,the further reduction in the deflection will be (the main current remains same).

  • A
    $\frac{8}{13}$ of the deflection when shunted with $4\,\Omega$ only
  • B
    $\frac{5}{13}$ of the deflection when shunted with $4\,\Omega$ only
  • C
    $\frac{3}{4}$ of the deflection when shunted with $4\,\Omega$ only
  • D
    $\frac{3}{13}$ of the deflection when shunted with $4\,\Omega$ only

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When a shunt of $4\,\Omega$ is attached to a galvanometer,the deflection reduces to $\frac{1}{5}$th of its initial value. If an additional shunt of $4\,\Omega$ is attached in parallel to the first,what will be the new deflection?

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$A$ galvanometer coil has a resistance $80 \Omega$ and current for full-scale deflection is $10 \text{ mA}$. $A$ resistance of $920 \Omega$ is connected in series with the galvanometer to make a voltmeter. If the least count of the voltmeter is $0.2 \text{ V}$,the number of divisions on the scale is:

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