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A point charge of 2.0 μC is at centre of...

A point charge of `2.0 μC` is at centre of cubical Gaussian surface `9.0 cm` on edge. what is the net electric flux through the surface?

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A point charge of 2muC is at the centre of a cubical Gaussian surface 9cm on the edge. Calculate the net electric flux through the surface.

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Knowledge Check

  • A charge of 5 C is placed at the centre of a spherical Gaussian surface of radius 5 cm. The electric flux through it is:

    A
    0.1 C
    B
    0.5 C
    C
    1 C
    D
    5 C
  • If the radus of the Gaussian surface enclosing a charge is haved, how does electric flux through the Gaussian surface change ?

    A
    Flux becomes doubl
    B
    Flux becomes half
    C
    Flux remains unchanged
    D
    None of these
  • A point charge is placed at the centre of a spherical Gaussian surface. The electric flux through its surface is 1.5 xx 10^(4)N-m^(2)//C . If the radius of the Gaussian surface is doubled. This flux passing through its surface will be

    A
    `1.5 xx 10^(4) N-m^(2)//C`
    B
    `3 xx 10^(4) N-m^(2)//C`
    C
    `6 xx 10^(4) N-m^(2)//C`
    D
    `20 xx 10^(4) N-m^(2)//C`
  • Similar Questions

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    An electric dipole is inclosed within a Gaussian surface. What is the electric flux through that surface?

    If the radius of the Gaussian surface enclosing a charge is halved, how does the electric flux through the Gaussian surface change?

    A point charge 17.7muC is located at the centre of the cube of side 0.03 m Find the electric flux through each face of the cube.

    A point charge +20muC is at a distance 10 cm directly above the centre of a square of side 20 cm as shown in the figure. What is the magnitude of the electric flux through the square ?

    A point charge is placed at the centre of a spherical Gaussian surface. The electric flux through its surface is 1.5xx10^(4)" N-m"^(2)//C . If the radius of the Gaussian surface is doubled. The flux passing through its surface will be