The diagram above shows a coaxial cable. The inner conductor has radius a = 0.0025 m. The outer conductor is a cylindrical shell with inner radius b=0.0075 m, and outer radius c = 0.008 m from the center. Both conductors are coaxial. For every length L= 10 m of cable, there is a total charge q = 2.8e-08 C on the inner conductor and a total charge of Q = -5.6e-06 C on the outer conductor. Determine the electric potential difference between the labeled points A and B.

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(for every 10m
of cable)
Perspective View
Front View
The diagram above shows a coaxial cable. The inner conductor has radius a = 0.0025 m. The outer conductor is a cylindrical
shell with inner radius b = 0.0075 m, and outer radius c = 0.008 m from the center. Both conductors are coaxial. For every
length L= 10 m of cable, there is a total charge q = 2.8e-08 C on the inner conductor and a total charge of Q = -5.6e-06 C on
the outer conductor.
=
+q
(for every 10m
of cable)
Determine the electric potential difference between the labeled points A and B.
AVAB VB-VA=
V
Enter Help
Transcribed Image Text:(for every 10m of cable) Perspective View Front View The diagram above shows a coaxial cable. The inner conductor has radius a = 0.0025 m. The outer conductor is a cylindrical shell with inner radius b = 0.0075 m, and outer radius c = 0.008 m from the center. Both conductors are coaxial. For every length L= 10 m of cable, there is a total charge q = 2.8e-08 C on the inner conductor and a total charge of Q = -5.6e-06 C on the outer conductor. = +q (for every 10m of cable) Determine the electric potential difference between the labeled points A and B. AVAB VB-VA= V Enter Help
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