A metal sphere with radius is supported on an insulating | StudySoup

Textbook Solutions for Sears and Zemansky's University Physics with Modern Physics

Chapter 23 Problem 23.48

Question

A metal sphere with radius \(r_{a}=1.20 \mathrm{~cm}\) is supported on an insulating stand at the center of a hollow, metal, spherical shell with radius \(r_{b}=9.60 \mathrm{~cm}\). Charge +q is put on the inner sphere and charge -q on the outer spherical shell. The magnitude of q is chosen to make the potential difference between the spheres 500 V, with the inner sphere at higher potential.

(a) Use the result of Exercise 23.47(b) to calculate q.

(b) With the help of the result of Exercise 23.47(a), sketch the equipotential surfaces that correspond to 500, 400, 300, 200, 100, and

(c) In your sketch, show the electric field lines. Are the electric field lines and equipotential surfaces mutually perpendicular? Are the equipotential surfaces closer together when the magnitude of \(\overrightarrow{\boldsymbol{E}}\) is largest?

Solution

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The first step in solving 23 problem number 48 trying to solve the problem we have to refer to the textbook question: A metal sphere with radius \(r_{a}=1.20 \mathrm{~cm}\) is supported on an insulating stand at the center of a hollow, metal, spherical shell with radius \(r_{b}=9.60 \mathrm{~cm}\). Charge +q is put on the inner sphere and charge -q on the outer spherical shell. The magnitude of q is chosen to make the potential difference between the spheres 500 V, with the inner sphere at higher potential. (a) Use the result of Exercise 23.47(b) to calculate q. (b) With the help of the result of Exercise 23.47(a), sketch the equipotential surfaces that correspond to 500, 400, 300, 200, 100, and (c) In your sketch, show the electric field lines. Are the electric field lines and equipotential surfaces mutually perpendicular? Are the equipotential surfaces closer together when the magnitude of \(\overrightarrow{\boldsymbol{E}}\) is largest?
From the textbook chapter Electric Potential you will find a few key concepts needed to solve this.

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full solution

Title Sears and Zemansky's University Physics with Modern Physics 13 
Author Hugh D. Young; Roger A. Freedman; A. Lewis Ford
ISBN 9780321696861

A metal sphere with radius is supported on an insulating

Chapter 23 textbook questions

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