P.5-6 A current I flows in the inner conductor of an infinitely long coaxial line and returns via the outer conductor. The radius of the inner conductor is a, and the inner and outer radii of the outer conductor are b and c, respectively. Find the magnetic flux density B for all regions and plot [B] versus r.

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Please solve problem 5.6 using the steps explained in problem 2 as I am having trouble understanding it. Thank you!!!

P.5-6 A current I flows in the inner conductor of an infinitely long coaxial line
and returns via the outer conductor. The radius of the inner conductor is a,
and the inner and outer radii of the outer conductor are b and c, respectively.
Find the magnetic flux density B for all regions and plot [B] versus r.
Transcribed Image Text:P.5-6 A current I flows in the inner conductor of an infinitely long coaxial line and returns via the outer conductor. The radius of the inner conductor is a, and the inner and outer radii of the outer conductor are b and c, respectively. Find the magnetic flux density B for all regions and plot [B] versus r.
2. Solve problem 5.6 (page 224) with following steps: a) Draw a diagram of a coaxial cable with an inner conductor with
current flowing into the paper and an outer conductor with current flowing out of the paper. b) Identify number of regions
in the diagram and find the current enclosed by a circular path in each region. c) Apply Ampere's law to find H field by
dividing the current enclosed in each region with the length of the circular path. Notice that H should be a piece-wise
function of radius p of the circular path. d) Find B as a piece-wise function and plot it versus p.
Transcribed Image Text:2. Solve problem 5.6 (page 224) with following steps: a) Draw a diagram of a coaxial cable with an inner conductor with current flowing into the paper and an outer conductor with current flowing out of the paper. b) Identify number of regions in the diagram and find the current enclosed by a circular path in each region. c) Apply Ampere's law to find H field by dividing the current enclosed in each region with the length of the circular path. Notice that H should be a piece-wise function of radius p of the circular path. d) Find B as a piece-wise function and plot it versus p.
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