University Physics (14th Edition)
University Physics (14th Edition)
14th Edition
ISBN: 9780133969290
Author: Hugh D. Young, Roger A. Freedman
Publisher: PEARSON
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Chapter 24, Problem 24.10E

A cylindrical capacitor consists of a solid inner conducting core with radius 0.250 cm, surrounded by an outer hollow conducting tube. The two conductors are separated by air, and the length of the cylinder is 12.0 cm. The capacitance is 36.7 pF. (a) Calculate the inner radius of the hollow tube, (b) When the capacitor is charged to 125 V, what is the charge per unit length λ on the capacitor?

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Suppose a capacitor consists of two coaxial thin cylindrical conductors. The inner cylinder of radius rg has a charge of +Q, while the outer cylinder of radius rp has charge -Q. The electric field E at a radial distance r from the central axis is given by the function: E = ae ao + B/r + bo where alpha (a), beta (B), ao and bo are constants. Find an expression for its capacitance. First, let us derive the potential difference Vab between the two conductors. The potential difference is related to the electric field by: Vab = ["Edr = - [ *e Edr Calculating the antiderivative or indefinite integral , Vab = (-aaoe¯rao + B + bo By definition, the capacitance C is related to the charge and potential difference by: C = Evaluating with the upper and lower limits of integration for Vab, then simplifying: C= Q/| terb/ao - era/ao) + ß In( ) + bo ( ))
Suppose a capacitor consists of two coaxial thin cylindrical conductors. The inner cylinder of radius ra has a charge of +Q, while the outer cylinder of radius rb has charge -Q. The electric field E at a radial distance r from the central axis is given by the function: E = ae Trao + B/r + bo where alpha (a), beta (ß), ao and bo are constants. Find an expression for its capacitance. First, let us derive the potential difference ab between the two conductors. The potential difference is related to the electric field by: Vob = - S *Edr= - ["Edr Calculating the antiderivative or indefinite integral, Vab = (-aage" o-r/ao + B + bo By definition, the capacitance C is related to the charge and potential difference by: C = Evaluating with the upper and lower limits of integration for Vab, then simplifying: C = Q/( (erb/ao - eralao) + ß In( ) + bo ( ))
Capacitance  Problem 7:   Consider a spherical metal shell of radius R in empty space.  Part (b)  Calculate the capacitance, in picofarads, of such a conductor with a radius of R = 0.058 m.

Chapter 24 Solutions

University Physics (14th Edition)

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