$A$ spherical rubber balloon carries a charge,uniformly distributed over its surface. As the balloon is blown up and increases in size,the total electric flux coming out of the surface

  • A
    becomes zero
  • B
    decreases
  • C
    increases
  • D
    remains unchanged

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Similar Questions

$A$ charge $q$ is placed at the center of one of the faces of a cube. What is the electric flux linked with the cube?

If the radius of the spherical Gaussian surface is increased,then the electric flux due to a point charge enclosed by the surface:

$q_1, q_2, q_3$ and $q_4$ are point charges located as shown in the figure,and $S$ is a spherical Gaussian surface of radius $R$. Which of the following is true according to Gauss's law?

Four closed surfaces $S_1, S_2, S_3$ and $S_4$ together with charges $+q, -q$ and $-2q$ are shown. Through which one of the surfaces is the net flux zero?

The net electric flux due to a uniform electric field of $3 \times 10^3 \hat{i} \text{ NC}^{-1}$ through a cube of side $20 \text{ cm}$ oriented such that its faces are parallel to the coordinate planes is

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