In the previous problem, when b→0 then the system Cylindrical void in current- carrying conductor becomes a solid conductor of radius t with a uniform current density J, and the field can be put into the following form B(r)= з мото хт -(õñt²)×î_r>t Мо 2πι r

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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In the previous problem, when b→0 then the system
becomes a solid conductor of radius t with a uniform
current density J, and the field can be put into the
following form
B(r)=
M₁J₁XF
Ho (Jon²)xî r>t
2πη
r<t
Cylindrical void in current-
carrying conductor
Use this result to find the magnetic field inside of a cylindrical void of radius a that lies
within a current-carrying conductor of radius t, if the axis of the void is located a
distance from the center of the conductor. Express your final answer in terms of
the current I and the geometrical parameters.
Transcribed Image Text:In the previous problem, when b→0 then the system becomes a solid conductor of radius t with a uniform current density J, and the field can be put into the following form B(r)= M₁J₁XF Ho (Jon²)xî r>t 2πη r<t Cylindrical void in current- carrying conductor Use this result to find the magnetic field inside of a cylindrical void of radius a that lies within a current-carrying conductor of radius t, if the axis of the void is located a distance from the center of the conductor. Express your final answer in terms of the current I and the geometrical parameters.
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