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.

Physics for Scientists and Engineers: Foundations and Connections
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Chapter26: Electric Potential
Section: Chapter Questions
Problem 42PQ: A line of charge with uniform charge density = 2.00 103 C/m lies along the x axis from x = 0.250 m...
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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.
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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