Figure 1.0a shows an electric dipole in a uniform electric field with magnitude 5.0 x 10 N/C directed parallel to the plane of the figure. The charges are + 1.6 x 10°C; both lie in the plane and are separated by O.125nm. Find a) The net force exerted by the field on the dipole; b) The magnitude and direction of the electric dipole moment; c) The magnitude and direction of the Torque; d) The potential energy of the system in position shown. 35 145° +q 145° (a) (b) Figure 1.0 (a) an electric dipole (b) Direction of the electric dipole moment, electric field, and torque

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Figure 1.0a shows an electric dipole in a uniform electric field with magnitude 5.0 x 10
N/C directed parallel to the plane of the figure. The charges are + 1.6 x 10°C; both lie in
the plane and are separated by O.125nm.
Find
a) The net force exerted by the field on the dipole;
b) The magnitude and direction of the electric dipole moment;
c) The magnitude and direction of the Torque;
d) The potential energy of the system in position shown.
35°
145°
145°
(a)
(b)
Figure 1.0 (a) an electric dipole (b) Direction of the electric dipole moment, electric field,
and torque
Transcribed Image Text:Figure 1.0a shows an electric dipole in a uniform electric field with magnitude 5.0 x 10 N/C directed parallel to the plane of the figure. The charges are + 1.6 x 10°C; both lie in the plane and are separated by O.125nm. Find a) The net force exerted by the field on the dipole; b) The magnitude and direction of the electric dipole moment; c) The magnitude and direction of the Torque; d) The potential energy of the system in position shown. 35° 145° 145° (a) (b) Figure 1.0 (a) an electric dipole (b) Direction of the electric dipole moment, electric field, and torque
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