$A$ charge is spread non-uniformly on the surface of a hollow sphere of radius $R$,such that the charge density is given by $\sigma = \sigma_0(1 - \sin \theta)$,where $\theta$ is the usual polar angle. The potential at the centre of the sphere is

  • A
    $\frac{Q}{2 \pi \varepsilon_0 R}$
  • B
    $\frac{Q}{\pi \varepsilon_0 R}$
  • C
    $\frac{Q}{8 \pi \varepsilon_0 R}$
  • D
    $\frac{Q}{4 \pi \varepsilon_0 R}$

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Charges $Q, 2Q$ and $-Q$ are given to three concentric conducting shells $A, B$ and $C$ respectively as shown. The ratio of charges on the inner and outer surfaces of shell $C$ will be:

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In the absence of other conductors,the surface charge density is:

$A$ spherical conducting shell of inner radius $r_1$ and outer radius $r_2$ has a net charge $Q$. $A$ point charge $-q$ is placed at the center of the shell. Determine the surface charge density on the inner and outer surfaces of the shell.

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