An infinitely long insulating cylinder of radius R has a volume charge density that varies with the radhus as given by the following expression where P 4, and are positive cons axis of the cylinder. P-P-1) Use Gauss's law to determine the magnitude of the electric field at the following radial distances. (Use the following as necessary for Por, b, and R.) (a) R Pol 0- 315 2r 36 x
An infinitely long insulating cylinder of radius R has a volume charge density that varies with the radhus as given by the following expression where P 4, and are positive cons axis of the cylinder. P-P-1) Use Gauss's law to determine the magnitude of the electric field at the following radial distances. (Use the following as necessary for Por, b, and R.) (a) R Pol 0- 315 2r 36 x
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![An infinitely long insulating cylinder of radius R has a volume charge density that varies with the radius as given by the following expression where pa, and are positive consta
axis of the cylinder
p-p(0-1)
Use Gauss's law to determine the magnitude of the electric field at the following radial distances. (Use the following as necessary: Po, b, c, and R.)
(a)
<R
EH
Po
2 (0-3)
(b) r>R
EM
Po
x
2R
(-36)
200
x](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F05834585-9fda-43f2-ae6d-35eff4ecddb6%2Fac04e811-d8f5-4fd9-89c9-fc806ceeb7a9%2Fbny2rue_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An infinitely long insulating cylinder of radius R has a volume charge density that varies with the radius as given by the following expression where pa, and are positive consta
axis of the cylinder
p-p(0-1)
Use Gauss's law to determine the magnitude of the electric field at the following radial distances. (Use the following as necessary: Po, b, c, and R.)
(a)
<R
EH
Po
2 (0-3)
(b) r>R
EM
Po
x
2R
(-36)
200
x
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