Problem 3: (8% of Assignment Value) A collection of four charges and four Gaussian surfaces are shown in the figure. The charges have values: 91 = : +6.66 nC 92 = -6.66 nC 93 = 94 = +19.2 nC = -25.3 nC The dashed lines represent the intersection of the closed three-dimensional surfaces with the plane of the image. If a charge is shown within a dashed curve, then it is contained with the corresponding surface. 94 Otheexpertta.com Part (a) What is the electric flux, in newton squared meters per coulomb, through the first closed surface, S₁? Part (b) What is the electric flux, in newton squared meters per coulomb, through the second closed surface, S₂? Part (c) What is the electric flux, in newton squared meters per coulomb, through the third closed surface, S3? Part (d) What is the electric flux, in newton squared meters per coulomb, through the fourth closed surface, S4? $4 = N⚫m²/C Grade Summary Deductions Potential 0% 100%
Problem 3: (8% of Assignment Value) A collection of four charges and four Gaussian surfaces are shown in the figure. The charges have values: 91 = : +6.66 nC 92 = -6.66 nC 93 = 94 = +19.2 nC = -25.3 nC The dashed lines represent the intersection of the closed three-dimensional surfaces with the plane of the image. If a charge is shown within a dashed curve, then it is contained with the corresponding surface. 94 Otheexpertta.com Part (a) What is the electric flux, in newton squared meters per coulomb, through the first closed surface, S₁? Part (b) What is the electric flux, in newton squared meters per coulomb, through the second closed surface, S₂? Part (c) What is the electric flux, in newton squared meters per coulomb, through the third closed surface, S3? Part (d) What is the electric flux, in newton squared meters per coulomb, through the fourth closed surface, S4? $4 = N⚫m²/C Grade Summary Deductions Potential 0% 100%
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 9CQ
Related questions
Question

Transcribed Image Text:Problem 3: (8% of Assignment Value)
A collection of four charges and four Gaussian surfaces are shown in the figure. The charges have values:
91 =
: +6.66 nC
92 = -6.66 nC
93 =
94 =
+19.2 nC
= -25.3 nC
The dashed lines represent the intersection of the closed three-dimensional surfaces with the plane of the image. If a charge is
shown within a dashed curve, then it is contained with the corresponding surface.
94
Otheexpertta.com
Part (a)
What is the electric flux, in newton squared meters per coulomb, through the first closed surface, S₁?
Part (b)
What is the electric flux, in newton squared meters per coulomb, through the second closed surface, S₂?
Part (c)
What is the electric flux, in newton squared meters per coulomb, through the third closed surface, S3?
Part (d)
What is the electric flux, in newton squared meters per coulomb, through the fourth closed surface, S4?
$4 =
N⚫m²/C
Grade Summary
Deductions
Potential
0%
100%
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