Consider the Gaussian surface shown in Figure 2. A uniform external electric field E, having magnitude 3.20 x 10° N/C and parallel to the xz plane with an angle of 36.87° measured from the +x axis toward the +z axis, enters through face 1 (back face). In addition, a uniform electric field E, of magnitude 6.40 x 103 N/C traveling in the same direction as flows outwardly through face 2 (front face).
Consider the Gaussian surface shown in Figure 2. A uniform external electric field E, having magnitude 3.20 x 10° N/C and parallel to the xz plane with an angle of 36.87° measured from the +x axis toward the +z axis, enters through face 1 (back face). In addition, a uniform electric field E, of magnitude 6.40 x 103 N/C traveling in the same direction as flows outwardly through face 2 (front face).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
![Determine:
The net charge contained within the surface. If this electric
field is produced only by the charge inside the surface.
Note: the following table contains the unit normal vectors to
each face.
Face
Unit vector
:-0,8 î – 0,6 k
î2 = 0,8 î + 0,6 k
îz = -0,6 î + 0,8 k
î4 = 0,6 î – 0,8 k
îîg = 1 j
îo = -1j
1 back
2 front
3 left
4 right
5 top
%D
6 bottom](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F21ff491d-d77d-4861-94b9-2bc36c90c2c9%2F0de4ac57-a41b-4fa5-b794-37585d772349%2F8xlvpc9_processed.png&w=3840&q=75)
Transcribed Image Text:Determine:
The net charge contained within the surface. If this electric
field is produced only by the charge inside the surface.
Note: the following table contains the unit normal vectors to
each face.
Face
Unit vector
:-0,8 î – 0,6 k
î2 = 0,8 î + 0,6 k
îz = -0,6 î + 0,8 k
î4 = 0,6 î – 0,8 k
îîg = 1 j
îo = -1j
1 back
2 front
3 left
4 right
5 top
%D
6 bottom
![Problem 2
Consider the Gaussian surface shown in Figure 2. A uniform
external electric field E, having magnitude 3.20 x 103 N/C
and parallel to the xz plane with an angle of 36.87° measured
from the +x axis toward the +z axis, enters through face 1
(back face). In addition, a uniform electric field E, of
magnitude 6.40 x 103 N/C traveling in the same direction as
E, , flows outwardly through face 2 (front face).
0,45 m
0,30 m
En
0.50 m
Figure 2. Gaussian surface in the form of a prism through
which two fields pass.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F21ff491d-d77d-4861-94b9-2bc36c90c2c9%2F0de4ac57-a41b-4fa5-b794-37585d772349%2F1zvf3ph_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 2
Consider the Gaussian surface shown in Figure 2. A uniform
external electric field E, having magnitude 3.20 x 103 N/C
and parallel to the xz plane with an angle of 36.87° measured
from the +x axis toward the +z axis, enters through face 1
(back face). In addition, a uniform electric field E, of
magnitude 6.40 x 103 N/C traveling in the same direction as
E, , flows outwardly through face 2 (front face).
0,45 m
0,30 m
En
0.50 m
Figure 2. Gaussian surface in the form of a prism through
which two fields pass.
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