An infinitely long coaxial transmission line carries a uniformly distributed total current I in the center conductor and -I in the outer conductor. The radius of the inner conductor is b, and the inner and outer radius of the outer conductor are a and c. Use Ampere's Circuital Law to calculate the magnetic field A. inside the inner conductor (pc)

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An infinitely long coaxial transmission line carries a uniformly
distributed total current I in the center conductor and -I in the outer conductor. The
radius of the inner conductor is b, and the inner and outer radius of the outer conductor
are a and c. Use Ampere's Circuital Law to calculate the magnetic field
A. inside the inner conductor (p<b)
B. between the inner and the outer conductor (b<p<a)
C. inside the outer conductor (a <p<c)
D. outside the coaxial transmission line (p>c)
Page
4 I 5
+
Tiffany Rich
Transcribed Image Text:An infinitely long coaxial transmission line carries a uniformly distributed total current I in the center conductor and -I in the outer conductor. The radius of the inner conductor is b, and the inner and outer radius of the outer conductor are a and c. Use Ampere's Circuital Law to calculate the magnetic field A. inside the inner conductor (p<b) B. between the inner and the outer conductor (b<p<a) C. inside the outer conductor (a <p<c) D. outside the coaxial transmission line (p>c) Page 4 I 5 + Tiffany Rich
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