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6) Use Gilberts 8 foldway for Gauss's Law to find the E field in the regions
0<r<R1 and R1<r<R2 and r> R2
Transcribed Image Text:6) Use Gilberts 8 foldway for Gauss's Law to find the E field in the regions 0<r<R1 and R1<r<R2 and r> R2
A very LONG
hollow cylindrical
conducting shell
(in electrostatic
equilibrium) has an
inner radius R1 and
oll Session
R2
R1
| Charged Gas
ssions
Gausslan
es
Cylinder
Conducting Shell
an outer radius R2
with a total charge
-5Q distributed
uniformly on its
0 <rc <R1
ous
ules
o Webex
surfaces. Asume
Gaussian
Cylinder
EWave Course
erials
the length of the
hollow conducting
cylinder is "L" and
R1 <r <R2
L>>R1 and L>> R2
Gaussian
Cylinder
The inside of the
re >R2
hollow cylindrical
conducting shell is
filled with
nonconducting gel
with a total charge
QGEL distributed as
r= ro*r? (where
Very very long
8-Q
ro= ) through
out the volume.)
a
58 F
earch
Transcribed Image Text:A very LONG hollow cylindrical conducting shell (in electrostatic equilibrium) has an inner radius R1 and oll Session R2 R1 | Charged Gas ssions Gausslan es Cylinder Conducting Shell an outer radius R2 with a total charge -5Q distributed uniformly on its 0 <rc <R1 ous ules o Webex surfaces. Asume Gaussian Cylinder EWave Course erials the length of the hollow conducting cylinder is "L" and R1 <r <R2 L>>R1 and L>> R2 Gaussian Cylinder The inside of the re >R2 hollow cylindrical conducting shell is filled with nonconducting gel with a total charge QGEL distributed as r= ro*r? (where Very very long 8-Q ro= ) through out the volume.) a 58 F earch
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