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Electrostatic P...

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  • Question 1
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    A positively charged particle is released from rest in an uniform electric field. The electric potential energy of the charge

  • Question 2
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    The electrostatic potential on the surface of a charged conducting sphere is 100V. Two statements are made in this regard: S1 (statement 1) at any point inside the sphere, electric intensity is zero. S2 (statement 2) at any point inside the sphere, the electrostatic potential is 100V. Which of the following is a correct statement?

  • Question 3
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    Equipotentials at a great distance from a collection of charges whose total sum is not zero are approximately

  • Question 4
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    Consider a uniform electric field in the z-direction. The potential is a constant

    (a) in all space

    (b) for any x for a given z

    (c) for any y for a given z

    (d) on the x-y plane for a given z

  • Question 5
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    Equipotential surfaces

    (a) are closer in regions of large electric fields compared to regions of lower electric fields

    (b) will be more crowded near sharp edges of a conductor

    (c) will be more crowded near regions of large charge densities

    (d) will always be equally spaced

  • Question 6
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    The work done to move a charge along an equipotential from A to B.

  • Question 7
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    In a region of constant potential

    (a) the electric field is uniform

    (b) the electric field is zero

    (c) there can be no charge inside the region

    (d) the electric field shall necessarily change if a charge is placed outside the region

  • Question 8
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    If a conductor has a potential V 0 and there are no charge anywhere else outside, then

    (a) there must be charges on the surface or inside itself

    (b) there cannot be any charge in the body of the conductor

    (c) there must be charges only on the surface

    (d) there must be charges inside the surface

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