The figure below shows an electrical dipole inside a uniform electrical field with a module equal to 5.0*10^5 N / C oriented parallel to the plane of the figure. The loads are ± 1.6*10^-19 C and the distance between them is 0.125 *10^-9 m. Find the resulting force (FR) exerted by the electric field on the dipole, the electric dipole moment (p), the torque (τ) and the potential energy (U) of the system in the indicated position.
The figure below shows an electrical dipole inside a uniform electrical field with a module equal to 5.0*10^5 N / C oriented parallel to the plane of the figure. The loads are ± 1.6*10^-19 C and the distance between them is 0.125 *10^-9 m. Find the resulting force (FR) exerted by the electric field on the dipole, the electric dipole moment (p), the torque (τ) and the potential energy (U) of the system in the indicated position.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter38: Refraction And Images Formed By Refraction
Section: Chapter Questions
Problem 70PQ: A Fill in the missing entries in Table P38.70. Table P38.70
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The figure below shows an electrical dipole inside a uniform electrical field with a module equal to 5.0*10^5 N / C oriented parallel to the plane of the figure. The loads are ± 1.6*10^-19 C and the distance between them is 0.125 *10^-9 m. Find the resulting force (FR) exerted by the electric field on the dipole, the electric dipole moment (p), the torque (τ) and the potential energy (U) of the system in the indicated position.
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