The diagram below shows a large uniformly charged sheet field line for an electric field. near the surface of this sheet, and a cylindrical gaussian surface. The electric field has a uniform strength of 200 n/c and is perpendicular to the surface of the sheet. The Gaussiar surface is 0.02 m long and is circular and have a diameter of 0.008 m a. What is the total electric flux through the curved portion of the Gaussian surface? b. What is the total electric flux through each end c the gaussian surface? c. How much charge is enclosed by the Gaussian surface?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter19: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 73P: Two infinite, nonconducting sheets of charge are parallel to each other as shown in Figure P19.73....
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1.
The diagram below shows a large uniformly charged
sheet field line for an electric field. near the surface of
this sheet, and a cylindrical gaussian surface. The
electric field has a uniform strength of 200 n/c and is
perpendicular to the surface of the sheet. The Gaussian
surface is 0.02 m long and is circular and have a
diameter of 0.008 m
a. What is the total electric flux through the curved
portion of the Gaussian surface?
b. What is the total electric flux through each end of
the gaussian surface?
c. How much charge is enclosed by the Gaussian
surface?
d. What is the charge density (charge per unit) of
the sheet?
Transcribed Image Text:1. The diagram below shows a large uniformly charged sheet field line for an electric field. near the surface of this sheet, and a cylindrical gaussian surface. The electric field has a uniform strength of 200 n/c and is perpendicular to the surface of the sheet. The Gaussian surface is 0.02 m long and is circular and have a diameter of 0.008 m a. What is the total electric flux through the curved portion of the Gaussian surface? b. What is the total electric flux through each end of the gaussian surface? c. How much charge is enclosed by the Gaussian surface? d. What is the charge density (charge per unit) of the sheet?
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