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Electric field at the centre 'O' of a semicircle of radius 'a' having linear charge density λ, is given as:

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Important Questions on Electrostatics

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Semicircular ring of radius 0.5 m is uniformly charged with a total charge of 1.5 × 109 C. The electric potential at the centre of this ring is:
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For the given figure the direction of electric field at A will be:

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-1×10-6 C charge is on a drop of water having a mass 10-6 kg. What electric field should be applied on the drop so that it is in the balanced condition with its weight?
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Two small identical spheres, each of mass 1 g and carrying the same charge 10-9 C are suspended by threads of equal lengths. If the distance between the centres of the spheres is 0.3 cm in equilibrium then the inclination of the thread with the vertical will be:
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Two infinitely long parallel wires having linear charge densities λ1, and λ2 respectively are placed at a distance R metre. The force per length on either wire will be k=14πε0
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A solid sphere of radius R, is charged uniformly with a total charge Q. Then the correct expression for electric field is (r=distance from centre):
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Which one of the following patterns of electrostatic lines of force is not possible?
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A sphere of radius R and charge Q is placed inside a concentric imaginary sphere of radius 2R. The flux associated with the imaginary sphere is: