$A$ thick uniformly charged hollow cylinder of inner radius $a$ and outer radius $b$ rotates with constant angular speed $\omega$ about its axis $APB$,with charge density $\rho$. Given that $L \gg a$ and $L \gg b$,and $P$ is the midpoint of $AB$. Choose the incorrect option.

  • A
    Magnetic field at point $P$ is $\frac{\mu_0 \omega \rho (b^2 - a^2)}{2}$.
  • B
    Magnetic field at point $B$ is $\frac{\mu_0 \omega \rho (b^2 - a^2)}{4}$.
  • C
    Direction of magnetic field at $A, B, P$ is same.
  • D
    Graph of magnetic field on the axis of cylinder with distance from point $P$ is as shown in the image.

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In a toroid,the magnetic field on the axis is to be calculated given the radius $r = 0.5 \, cm$,current $I = 1.5 \, A$,number of turns $N = 250$,and relative permeability $\mu_r = 700$. Find the magnetic field $B$ (in Tesla). (in $.5$)

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