A solid, insulating sphere of radius a has a uniform charge density of p and a total charge of Q. Concentric with this sphere is a conducting hollow sphere whose inner and outer radii are b and c, as shown in the figure below, with a charge of -8Q. Insulator Conductor

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A solid, insulating sphere of radius a has a uniform charge density of p and a total charge of Q. Concentric with this sphere is a conducting hollow sphere whose inner and outer radii are b and c, as shown in the figure below, with a charge
of -8Q.
Insulator
Conductor
To specify all three of p, Q and a is redundant, but is done here to make it easier to enter answers. What is Q in terms of p and a?
Q =
Find the magnitude of the electric field in the following regions.
r<a (Use the following as necessary: p, ɛ0, and r.)
E =
a <r<b (Use the following as necessary: Q, ɛo, TT, and r.)
E =
b <r<c (Use the following as necessary: Q, ɛo, T, and r.)
E =
r> c (Use the following as necessary: Q, 8o, TT, and r.)
E =
Transcribed Image Text:A solid, insulating sphere of radius a has a uniform charge density of p and a total charge of Q. Concentric with this sphere is a conducting hollow sphere whose inner and outer radii are b and c, as shown in the figure below, with a charge of -8Q. Insulator Conductor To specify all three of p, Q and a is redundant, but is done here to make it easier to enter answers. What is Q in terms of p and a? Q = Find the magnitude of the electric field in the following regions. r<a (Use the following as necessary: p, ɛ0, and r.) E = a <r<b (Use the following as necessary: Q, ɛo, TT, and r.) E = b <r<c (Use the following as necessary: Q, ɛo, T, and r.) E = r> c (Use the following as necessary: Q, 8o, TT, and r.) E =
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