The effective capacitance between points $X$ and $Y$ is ....... $\mu F$.

  • A
    $1/3$
  • B
    $9$
  • C
    $3$
  • D
    $6$

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Seven capacitors,each of capacitance $2\,\mu F$,are to be connected to obtain a total equivalent capacitance of $10/11\,\mu F$. Which of the following combinations is possible?

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The effective capacitance between $A$ and $B$ in the given figure is:

What is the potential difference between points $A$ and $B$ in the circuit shown (in $V$)?

In the circuit shown,a potential difference of $60\,V$ is applied across $AB$. The potential difference between the points $M$ and $N$ is.....$V$.

The equivalent capacitance of three capacitors of capacitance $C_1, C_2$ and $C_3$ connected in parallel is $12$ units and their product is $C_1 \cdot C_2 \cdot C_3 = 48$. When the capacitors $C_1$ and $C_2$ are connected in parallel,the equivalent capacitance is $6$ units. Then the capacitances are:

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