moment A very small current loop with magnetic m₁ = 5a, A m² is located at the origin, while another very small loop with magnetic moment m2 m₂ = 3ây A m² is located in Cartesian coordinates at P = (4, -3, 10). Both loops lie in a region of free space. Determine the torque on the second loop due to the first loop. m 4πr³ Note: The magnetic field from a magnetic dipole at the origin oriented in the z-direction is given by (2 cosa, + sin fâ) A/m
moment A very small current loop with magnetic m₁ = 5a, A m² is located at the origin, while another very small loop with magnetic moment m2 m₂ = 3ây A m² is located in Cartesian coordinates at P = (4, -3, 10). Both loops lie in a region of free space. Determine the torque on the second loop due to the first loop. m 4πr³ Note: The magnetic field from a magnetic dipole at the origin oriented in the z-direction is given by (2 cosa, + sin fâ) A/m
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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
Transcribed Image Text:moment
m₁ = 5a₂ A m²
is located at the origin, while another very small loop with magnetic moment
m₂ = 3a, Am²
is located in Cartesian coordinates at P = (4, -3, 10). Both loops lie in a region of
free space. Determine the torque on the second loop due to the first loop.
Note: The magnetic field from a magnetic dipole at the origin oriented in the z-direction
is given by
H
A very small current loop with magnetic
=
m
4πr³
(2 cosa + sin fâ) A/m
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