Problem 1 On the right shows a system where a current I flowing upward along the central wire, spreading uniformly at the upper cap in the radial direction, flowing down vertically on the cylindrical wall, and then flowing radially inward back to the central wire. The radius and height of the of system are R and L respectively. (a) Argue that the auxiliary field H everywhere has the form of H = H(s, 2) o. (b) Find B(s,z) at every point in the space. R

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter3: Transient Heat Conduction
Section: Chapter Questions
Problem 3.1P: Consider a flat plate or a plane wall with a thickness L and a long cylinder of radius r0. Both of...
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In addition , the space between the upper cap, the lower cap, and the cylindrical wall is filled with linear insulating material of permeability u.
Problem 1
On the right shows a system where a current I flowing upward along the central
wire, spreading uniformly at the upper cap in the radial direction, flowing down
vertically on the cylindrical wall, and then flowing radially inward back to the
central wire. The radius and height of the of system are R and L respectively.
(a) Argue that the auxiliary field H everywhere has the form of H = H(s, 2) o.
(b) Find B(s,z) at every
point in the space.
R
Transcribed Image Text:Problem 1 On the right shows a system where a current I flowing upward along the central wire, spreading uniformly at the upper cap in the radial direction, flowing down vertically on the cylindrical wall, and then flowing radially inward back to the central wire. The radius and height of the of system are R and L respectively. (a) Argue that the auxiliary field H everywhere has the form of H = H(s, 2) o. (b) Find B(s,z) at every point in the space. R
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