3. Charge is distributed throughout a spherical volume of radius R with a density p= ar², where a is a constant. Determine the electric field due to the charge at points both inside and outside the sphere. You will have two equations for E, one for inside the sphere and one for outside the sphere. R inside outside
3. Charge is distributed throughout a spherical volume of radius R with a density p= ar², where a is a constant. Determine the electric field due to the charge at points both inside and outside the sphere. You will have two equations for E, one for inside the sphere and one for outside the sphere. R inside outside
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
Transcribed Image Text:3. Charge is distributed throughout a spherical
volume of radius R with a density p = ar²,
where a is a constant. Determine the electric
field due to the charge at points both inside and
outside the sphere.
You will have two equations for E, one
for inside the sphere and one for
outside the sphere.
R
inside
outside
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