Problem 3: A hollow conducting sphere has an inner radius of r = 1.1 cm and an outside radius of r, = 3.5 cm. The sphere has a net charge of Q = 2.2 nC. Part (a) What is the magnitude of the electric field in the cavity at the center of the sphere, in newtons per coulomb? |E,

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Problem 3: A hollow conducting sphere has an inner radius of r = 1.1 cm and an outside
radius of r, = 3.5 cm. The sphere has a net charge of Q = 2.2 nC.
Part (a) What is the magnitude of the electric field in the cavity at the center of the sphere, in newtons per coulomb?
|E,<7l= [
Part (b) What is the magnitude of the field, in newtons per coulomb, inside the conductor, when r <r<r?
E, <r<rl = ||
Part (c) What is the magnitude of the field, in newtons per coulomb, at a distance r = 5.5 m away from the center of the sphere?
E(r) =
Transcribed Image Text:Problem 3: A hollow conducting sphere has an inner radius of r = 1.1 cm and an outside radius of r, = 3.5 cm. The sphere has a net charge of Q = 2.2 nC. Part (a) What is the magnitude of the electric field in the cavity at the center of the sphere, in newtons per coulomb? |E,<7l= [ Part (b) What is the magnitude of the field, in newtons per coulomb, inside the conductor, when r <r<r? E, <r<rl = || Part (c) What is the magnitude of the field, in newtons per coulomb, at a distance r = 5.5 m away from the center of the sphere? E(r) =
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