The equivalent resistance across $AB$ would be ............ $\Omega$

  • A
    $6$
  • B
    $8$
  • C
    $12$
  • D
    $20$

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What is the equivalent resistance between $P$ and $Q$ in the given circuit?

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What will be the most suitable combination of three resistors $A = 2 \, \Omega$,$B = 4 \, \Omega$,$C = 6 \, \Omega$ so that $\frac{22}{3} \, \Omega$ is the equivalent resistance of the combination?

$A$ wire has a resistance of $24\,\Omega$ and is bent into the shape shown in the figure. The effective resistance between $A$ and $B$ is .............. $\Omega$.

In the given network,the equivalent resistance between $A$ and $B$ is .............. $\Omega$.

The resistance of the series combination of two resistances is $S$. When they are joined in parallel,the total resistance is $P$. If $S = nP$,then the minimum possible value of $n$ is

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