The electric dipole P is fixed at a distance zo with angle along the Z-axis. Suppose the xy plate is a conductor at zero potential. (A) calculate the potential at the area z>0. (B) find the force that the electric dipole acts on the conductor plate. (C)find the charge density induced by the electric dipole on the surface of the conductor (xy-plate).
The electric dipole P is fixed at a distance zo with angle along the Z-axis. Suppose the xy plate is a conductor at zero potential. (A) calculate the potential at the area z>0. (B) find the force that the electric dipole acts on the conductor plate. (C)find the charge density induced by the electric dipole on the surface of the conductor (xy-plate).
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
Transcribed Image Text:The electric dipole P is fixed at a distance zo with angle along the Z-axis.
Suppose the xy plate is a conductor at zero potential.
(A) calculate the potential at the area z>0.
(B) find the force that the electric dipole acts on the conductor plate.
(C)find the charge density induced by the electric dipole on the surface of the
conductor (xy-plate).
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