For a sphere of radius R = 12.1 m that is charged with a non-uniform volume charge density: p(r) = ar + b with a = 6.8 × 10-12 C/m4 and b = 6.6 x 10-12 C/m² and r is the distance from the center of the sphere (see figure). r Calculate the electric potential at distance r = 8.5 m from the center. Assume that the potential on the surface of the sphere equals to zero, that is (R) = 0.
For a sphere of radius R = 12.1 m that is charged with a non-uniform volume charge density: p(r) = ar + b with a = 6.8 × 10-12 C/m4 and b = 6.6 x 10-12 C/m² and r is the distance from the center of the sphere (see figure). r Calculate the electric potential at distance r = 8.5 m from the center. Assume that the potential on the surface of the sphere equals to zero, that is (R) = 0.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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![For a sphere of radius R = 12.1 m that is charged with a non-uniform volume charge density:
p(r) = ar +
b
with a = 6.8 × 10-12 C/m4 and b = 6.6 x 10-12 C/m² and r is the distance from the center
of the sphere (see figure).
r
Calculate the electric potential at distance r = 8.5 m from the center.
Assume that the potential on the surface of the sphere equals to zero, that is (R) = 0.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe46ba65f-41b0-494a-895a-bef722e8442f%2F40a0bc2f-a1bc-4a55-948b-4eb9e08bddbb%2F9me4dus_processed.png&w=3840&q=75)
Transcribed Image Text:For a sphere of radius R = 12.1 m that is charged with a non-uniform volume charge density:
p(r) = ar +
b
with a = 6.8 × 10-12 C/m4 and b = 6.6 x 10-12 C/m² and r is the distance from the center
of the sphere (see figure).
r
Calculate the electric potential at distance r = 8.5 m from the center.
Assume that the potential on the surface of the sphere equals to zero, that is (R) = 0.
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