Z 1c 4 +2 30 1 20 2 1 Ο 1c S 3c 2 3 y Q1 Consider the charge distribution given in the figure on the left. 1c at (0,0,4), 3c at (0,0,1), 1c at (0,1,0), 3c at (0,4,0) and 2c distributed homogeneously on line x = [0,2]. Calculate the total displacement flux (5) through the sphere S with radius 3 and centered at the origin.
Z 1c 4 +2 30 1 20 2 1 Ο 1c S 3c 2 3 y Q1 Consider the charge distribution given in the figure on the left. 1c at (0,0,4), 3c at (0,0,1), 1c at (0,1,0), 3c at (0,4,0) and 2c distributed homogeneously on line x = [0,2]. Calculate the total displacement flux (5) through the sphere S with radius 3 and centered at the origin.
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![Z
1c 4
+2
30 1
20
2
1
Ο
1c
S
3c
2 3
y
Q1 Consider the charge distribution given in the figure on
the left. 1c at (0,0,4), 3c at (0,0,1), 1c at (0,1,0), 3c at
(0,4,0) and 2c distributed homogeneously on line x =
[0,2]. Calculate the total displacement flux (5) through
the sphere S with radius 3 and centered at the origin.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F79fd0088-a2c0-4c55-bc92-ab5d8a28f312%2F83cc9d03-c229-44e7-ac1a-e69a5c727da9%2Fcm6wa2k_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Z
1c 4
+2
30 1
20
2
1
Ο
1c
S
3c
2 3
y
Q1 Consider the charge distribution given in the figure on
the left. 1c at (0,0,4), 3c at (0,0,1), 1c at (0,1,0), 3c at
(0,4,0) and 2c distributed homogeneously on line x =
[0,2]. Calculate the total displacement flux (5) through
the sphere S with radius 3 and centered at the origin.
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