A 65.0-m length of coaxial cable has an inner conductor that has a diameter of 2.58 mm and carries a charge of 8.10 μC. The surrounding conductor has an inner diameter of 7.27 mm and a charge of -8.10 μC. Assume the region between the conductors is air. (a) What is the capacitance of this cable? C = nF (b) What is the potential difference between the two conductors? AV = KV
A 65.0-m length of coaxial cable has an inner conductor that has a diameter of 2.58 mm and carries a charge of 8.10 μC. The surrounding conductor has an inner diameter of 7.27 mm and a charge of -8.10 μC. Assume the region between the conductors is air. (a) What is the capacitance of this cable? C = nF (b) What is the potential difference between the two conductors? AV = KV
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![A 65.0-m length of coaxial cable has an inner conductor that has a diameter of 2.58 mm and carries a charge of 8.10 μC. The surrounding conductor has an inner diameter of 7.27 mm and a charge of -8.10 μC.
Assume the region between the conductors is air.
(a) What is the capacitance of this cable?
nF
(b) What is the potential difference between the two conductors?
ΔV =
kV](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9a1bfcfb-95da-4803-80a7-653d9880563f%2F05f46621-d65d-4fca-8ab1-d7fe0009274d%2F78xxp7_processed.png&w=3840&q=75)
Transcribed Image Text:A 65.0-m length of coaxial cable has an inner conductor that has a diameter of 2.58 mm and carries a charge of 8.10 μC. The surrounding conductor has an inner diameter of 7.27 mm and a charge of -8.10 μC.
Assume the region between the conductors is air.
(a) What is the capacitance of this cable?
nF
(b) What is the potential difference between the two conductors?
ΔV =
kV
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