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Q.Derive the equation for the couple acting on a electric dipole in a uniform electric field.

Telangana TsbieTelangana Board of Intermediate Education 2024Subjective· 4mImportance★★★★★
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An electric dipole placed at an angle to a uniform field experiences equal and opposite forces on its two charges, forming a couple of magnitude tau = pE sin(theta), which tends to align the dipole with the field.

Consider an electric dipole consisting of charges +q and -q separated by a distance 2a, with dipole moment p = q(2a), placed in a uniform external electric field E, making an angle theta with the field direction.

The force on the +q charge is qE (along E), and the force on the -q charge is qE (opposite to E, i.e. along -E). Since the field is uniform, these two forces are equal in magnitude and opposite in direction, so the net force on the dipole is zero. However, because the two forces act at different points (separated by the dipole length), they form a couple that produces a net torque.

Taking the perpendicular distance between the lines of action of the two forces as 2a sin(theta) (resolving the separation vector along the direction perpendicular to E), the torque of the couple is:

tau = (Force) x (perpendicular distance) = qE x 2a sin(theta) = (q x 2a) E sin(theta) = p E sin(theta)

since p = q(2a). In vector form, this is written as:

tau = p x E

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