Problem 11: A charge configuration with two charges of opposite sign but the same magnitude, q, and a separation distance, d, is called an electric dipole. The electric dipole moment, or EDM, E is a vector, p, with a magnitude p = qd and a direction from the negative charge towards the positive charge. When such a dipole is placed in a region of electric field, it will experience a torque which depends upon the angle, 8, between the directions of the EDM, p, and the electric field, E. Part (a) An electric dipole with an EDM, p, in a region of uniform electric field, E, directed from left to right is shown for several orientations where the angle between the directions of the field and the EDM take the values 0°, 45°, 90°, 180°, 225°, 270° and 315°. Select the image or images corresponding to a magnitude-zero torque on the dipole.

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Problem 11: A charge configuration with two charges of opposite sign but the same magnitude,
q, and a separation distance, d, is called an electric dipole. The electric dipole moment, or EDM,
is a vector, p, with a magnitude p = qd and a direction from the negative charge towards the
positive charge. When such a dipole is placed in a region of electric field, it will experience a
torque which depends upon the angle, 0, between the directions of the EDM, p, and the electric
field, E.
二
Part (a) An electric dipole with an EDM, p, in a region of uniform electric field, E, directed from left to right is shown for several orientations where
the angle between the directions of the field and the EDM take the values 0°, 45°, 90°, 180°, 225°, 270° and 315°. Select the image or images
corresponding to a magnitude-zero torque on the dipole.
Transcribed Image Text:Problem 11: A charge configuration with two charges of opposite sign but the same magnitude, q, and a separation distance, d, is called an electric dipole. The electric dipole moment, or EDM, is a vector, p, with a magnitude p = qd and a direction from the negative charge towards the positive charge. When such a dipole is placed in a region of electric field, it will experience a torque which depends upon the angle, 0, between the directions of the EDM, p, and the electric field, E. 二 Part (a) An electric dipole with an EDM, p, in a region of uniform electric field, E, directed from left to right is shown for several orientations where the angle between the directions of the field and the EDM take the values 0°, 45°, 90°, 180°, 225°, 270° and 315°. Select the image or images corresponding to a magnitude-zero torque on the dipole.
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