4. Find the value of the electric field at a distance r=10 cm from the center of a non-conducting sphere of radius R=1 cm which has an extra positive charge equal to 7 C uniformly distributed within the volume of the sphere. 6.3 х 1012 N/C 1.2 x 100 N/C c. 7.5 x 10-6 N/C d. 9.1 x 10-3 N/C а. b. 5. A positive charge is placed inside a spherical metallic shell with inner radius a and outer radius b. The charge is placed at shifted position relative to the center of the shell. Describe the charge distribution induced at the shell surfaces. A negative charge with uniform surface density will be induced on the inner surface; a positive charge will be induced on the outer surface. A negative charge with non-uniform surface density will be induced on the inner surface; a positive charge will be induced on the outer surface. A positive charge with uniform surface density will be induced on the inner surface, a negative charge will be induced on the outer surface. A positive charge with non-uniform surface density will be induced on the inner surface; a negative charge will be induced at the outer surface. a. b. с. d.

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4. Find the value of the electric field at a distance r=10 cm from the center of a non-conducting
sphere of radius R=1 cm which has an extra positive charge equal to 7 C uniformly distributed
within the volume of the sphere.
c. 7.5 x 10-6 N/C
d. 9.1 x 10-3 N/C
5. A positive charge is placed inside a spherical metallic shell with inner radius a and outer radius
b. The charge is placed at shifted position relative to the center of the shell. Describe the
a.
6.3 x 1012 N/C
1.2 x 100 N/C
b.
charge distribution induced at the shell surfaces.
A negative charge with uniform surface density will be induced on the inner
surface; a positive charge will be induced on the outer surface.
а.
A negative charge with non-uniform surface density will be induced on the inner
surface; a positive charge will be induced on the outer surface.
b.
A positive charge with uniform surface density will be induced on the inner
surface, a negative charge will be induced on the outer surface.
A positive charge with non-uniform surface density will be induced on the
inner surface; a negative charge will be induced at the outer surface.
с.
d.
Transcribed Image Text:4. Find the value of the electric field at a distance r=10 cm from the center of a non-conducting sphere of radius R=1 cm which has an extra positive charge equal to 7 C uniformly distributed within the volume of the sphere. c. 7.5 x 10-6 N/C d. 9.1 x 10-3 N/C 5. A positive charge is placed inside a spherical metallic shell with inner radius a and outer radius b. The charge is placed at shifted position relative to the center of the shell. Describe the a. 6.3 x 1012 N/C 1.2 x 100 N/C b. charge distribution induced at the shell surfaces. A negative charge with uniform surface density will be induced on the inner surface; a positive charge will be induced on the outer surface. а. A negative charge with non-uniform surface density will be induced on the inner surface; a positive charge will be induced on the outer surface. b. A positive charge with uniform surface density will be induced on the inner surface, a negative charge will be induced on the outer surface. A positive charge with non-uniform surface density will be induced on the inner surface; a negative charge will be induced at the outer surface. с. d.
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