Complete solution For a flux of D = (x^2 + y^2)·¹/³ ax, find the following: a. the volume charge density at P(1. 8. 2). b. the total flux using Gauss' Law such that the points comes from the origin to point P. c. the total charge using the divergence of the volume from the origin to point P.
Complete solution For a flux of D = (x^2 + y^2)·¹/³ ax, find the following: a. the volume charge density at P(1. 8. 2). b. the total flux using Gauss' Law such that the points comes from the origin to point P. c. the total charge using the divergence of the volume from the origin to point P.
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For a flux of D = (x^2 + y^2)-¹/3 ax, find the following:
a. the volume charge density at P(1. 8. 2).
b. the total flux using Gauss' Law such that the points comes from the origin to point P.
c. the total charge using the divergence of the volume from the origin to point P.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F066f1304-c467-47d7-9b81-bbc34a53b6d5%2F0df79f92-4aa0-45c9-9a08-d6297eea873c%2Fn11hhjv_processed.png&w=3840&q=75)
Transcribed Image Text:Complete solution
For a flux of D = (x^2 + y^2)-¹/3 ax, find the following:
a. the volume charge density at P(1. 8. 2).
b. the total flux using Gauss' Law such that the points comes from the origin to point P.
c. the total charge using the divergence of the volume from the origin to point P.
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