Embibe Experts Solutions for Chapter: Electrostatics, Exercise 11: Exercise (Previous Year Questions)

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Electrostatics, Exercise 11: Exercise (Previous Year Questions)

Attempt the practice questions on Chapter 22: Electrostatics, Exercise 11: Exercise (Previous Year Questions) with hints and solutions to strengthen your understanding. Beta Question Bank for Medical: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Electrostatics, Exercise 11: Exercise (Previous Year Questions) with Hints & Solutions

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The electric potential at a point due to an electric dipole will be -

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The force on a charge situated on the axis of a dipole is F. If the charge is shifted to double the distance, the acting force will be -

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For a uniformly charged sphere, the electric field from its centre:-

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A charge $Q$ is enclosed by a Gaussian spherical surface of radius R. If the radius is doubled, then the outward electric flux will 

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An electric dipole of moment 'p' is placed in an electric field of intensity 'E'. The dipole acquires a position such that the axis of the dipole makes an angle θ with the direction of the field. Assuming that the potential energy of the dipole to be zero when θ=90°, the torque and the potential energy of the dipole will respectively be

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A spherical conducting shell of radius r0 carry a charge q0. The value of electric field inside it is:

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Charges of 5μC each are placed at the corners of an equilateral triangle of side 10 cm. Then the force on each charge is

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An electric dipole is placed at an angle of 30° with an electric field intensity, 2×105 N C-1. It experiences a torque equal to 4 N m. The charge on the dipole, if the dipole length is 2 cm, is