A pure dipole p = p2 is located a distance a above an infinite grounded conducting plane (V = 0), as shown. Find the force F on the dipole. Find the potential V (F) = V(s, 2) above the conducting plane, where s is the distance from the z-axis. Find the induced surface charge density o(s) on the conducting plane. Hint: Use the method of images. Think carefully!
A pure dipole p = p2 is located a distance a above an infinite grounded conducting plane (V = 0), as shown. Find the force F on the dipole. Find the potential V (F) = V(s, 2) above the conducting plane, where s is the distance from the z-axis. Find the induced surface charge density o(s) on the conducting plane. Hint: Use the method of images. Think carefully!
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![A pure dipole p = pê is located a distance a above an infinite grounded
conducting plane (V = 0), as shown.
Find the force F on the dipole.
Find the potential V(F) = V(s, 2) above the conducting plane,
where s is the distance from the z-axis.
a
Find the induced surface charge density o(s) on the conducting
plane.
Hint: Use the method of images. Think carefully!](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbdaec677-e0a2-4f47-b203-79e3f2e6de72%2Ff11a5451-4568-4435-b271-32d6260e37ad%2Ftc3fiy_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A pure dipole p = pê is located a distance a above an infinite grounded
conducting plane (V = 0), as shown.
Find the force F on the dipole.
Find the potential V(F) = V(s, 2) above the conducting plane,
where s is the distance from the z-axis.
a
Find the induced surface charge density o(s) on the conducting
plane.
Hint: Use the method of images. Think carefully!
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