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Subjects

Physics

Dipole in a Uniform External Field

समान बाहरी विद्युत क्षेत्र में विद्युत द्विध्रुव

In Class 12 Physics, this topic from Chapter 1, Electric Charges and Fields, explains how an electric dipole behaves when placed in a uniform external electric field. Students learn why the equal and opposite forces on the charges produce zero net force but a torque that tends to align the dipole with the field. They study the torque formula, equilibrium positions, stability, and the dipole’s potential energy, U = −p·E, using clear vector and physical interpretations.

Practice questions

01 If a dipole is slowly rotated from zero degrees to ninety degrees and then slowly brought back from ninety degrees to zero degrees in a uniform electric field, what is the total external work?

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02 The torque on a dipole in a uniform electric field is maximum. If the dipole moment is slightly rotated toward the field direction, what happens to torque magnitude?

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03 When a dipole is released from ninety degrees toward the field direction in a uniform electric field, which energy increases?

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04 If a dipole is displaced very slightly from unstable equilibrium, which statement is correct?

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05 If a dipole is displaced very slightly from stable equilibrium, which statement is correct?

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06 If the angle between dipole moment and electric field is such that potential energy equals half of its minimum value, what is the angle?

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07 If the magnitude of potential energy is half the magnitude of minimum energy and the energy is positive, what is the angle?

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08 When a dipole is placed at forty-five degrees to a uniform electric field, what is correct about the factors of torque and energy magnitude?

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09 If a dipole is placed at a small angle from the field direction in a uniform electric field, how does the increase in energy approximately behave?

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10 At a point on the axial line of an electric dipole outside the positive charge, what is the direction of net electric field?

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11 What is the direction of net electric field on the equatorial line of an electric dipole?

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12 In a uniform electric field, what is the net force on an electric dipole if only electric forces are considered?

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13 In a non-uniform electric field, the net force on an electric dipole may not be zero. What is the main reason?

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14 For a dipole at far axial and equatorial points at the same distance, what is the ratio of the magnitudes of electric fields?

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15 Why is the net field on the equatorial line of a dipole opposite to the dipole moment?

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16 For an electric dipole, a far axial point and a far equatorial point are at the same distance. What is the ratio of their field magnitudes?

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17 In a uniform electric field, net force on a dipole is zero. When will its torque be maximum?

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18 Dipole moment is exactly opposite to the electric field. Why does a slight displacement prove the position unstable?

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19 Net force on a dipole is zero in a uniform electric field. If the field becomes non-uniform, why need the net force not remain zero?

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20 A dipole is placed in an electric field such that its dipole moment is opposite to the field. If released after a slight disturbance, toward which position will it rotate?

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21 Dipole moment is antiparallel to the field. Torque is zero at that instant, yet why is it not stable equilibrium?

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22 Why is external work needed to rotate a dipole from parallel to perpendicular orientation in an electric field?

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23 Net force on a dipole in a uniform field is zero. Yet why does its energy depend on angle?

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24 A dipole is parallel to the electric field. If it is slightly rotated, why does it tend to return?

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25 A dipole is antiparallel to the electric field. If it is slightly rotated, why does it not return?

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