1.) Find the expression for D as a function ofr from the center of a nonconducting sphere of radius R = 0.01 m which has a net positive charge of 7 C uniformly distributed within the volume of the sphere, assuming the negative 7 C charge is uniformly distributed over the surface of a much larger sphere. Note: the volume of a sphere of radius R is AT. Use the volume of the sphere to find the Po (volumetric charge density). 3 (a) Find D(r) for r < R. (b) Find D(F) for r > R. (c) Find D(r) for r = 0.1 m.

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1.) Find the expression for D as a function of r from the center of a nonconducting sphere
of radius R = 0.01 m which has a net positive charge of 7 C uniformly distributed within
the volume of the sphere, assuming the negative 7 C charge is uniformly distributed over the
surface of a much larger sphere.
Note: the volume of a sphere of radius R is TR®. Use the volume of the sphere to find the
Pu (volumetric charge density).
3
(a) Find D(F) for r < R.
(b) Find D(r) for r > R.
(c) Find D(F) for r = 0.1 m.
Transcribed Image Text:1.) Find the expression for D as a function of r from the center of a nonconducting sphere of radius R = 0.01 m which has a net positive charge of 7 C uniformly distributed within the volume of the sphere, assuming the negative 7 C charge is uniformly distributed over the surface of a much larger sphere. Note: the volume of a sphere of radius R is TR®. Use the volume of the sphere to find the Pu (volumetric charge density). 3 (a) Find D(F) for r < R. (b) Find D(r) for r > R. (c) Find D(F) for r = 0.1 m.
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