A long cylindrical conductor of radius has a uniform charge density of f1:= 5.0cm °1:= 4.0 C m on it surface. This cylinder is surrounded by a concentric conducting cylinder of radius r2:= 8.0cm and uniform charge density of 2:=-2.5 on its surface 5) Find the Efield at a distance 'r" in between the two conductors r
A long cylindrical conductor of radius has a uniform charge density of f1:= 5.0cm °1:= 4.0 C m on it surface. This cylinder is surrounded by a concentric conducting cylinder of radius r2:= 8.0cm and uniform charge density of 2:=-2.5 on its surface 5) Find the Efield at a distance 'r" in between the two conductors r
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![A long cylindrical conductor of radius r:= 5.0cm
has a uniform charge density of
0:= 4.0 on it surface. This cylinder is surrounded by a concentric conducting
μα
µC
cylinder of radius rɔ:= 8.0cm
and uniform charge density of 2:=-2.5.
2
m
on its surface
5) Find the Efield at a distance 'r" in between the two conductors
rį <r < r2
2.
O11.
a ) E =
b) E =
c ) E =
d)E = 0
2re €0
2r. €0](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa06fb91f-1445-4bd6-b9dd-268642fc0d22%2Ffdfe94b1-13f5-46c8-8992-635b92698417%2Fnh68l3v_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A long cylindrical conductor of radius r:= 5.0cm
has a uniform charge density of
0:= 4.0 on it surface. This cylinder is surrounded by a concentric conducting
μα
µC
cylinder of radius rɔ:= 8.0cm
and uniform charge density of 2:=-2.5.
2
m
on its surface
5) Find the Efield at a distance 'r" in between the two conductors
rį <r < r2
2.
O11.
a ) E =
b) E =
c ) E =
d)E = 0
2re €0
2r. €0
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