D4. ( In free space, two spherical surfaces at r = 1 and r 2 carrying surface charge densities 8nC/m² and - 6nC/m2 respectively. Find the total flux exiting each of the following: a. The closed surface of sphere defined as r = 0.75 The closed surface of sphere defined as r = 1.5 C. The closed surface of sphere defined as r= 4 d. The closed surface of the cube with sides equal to 20 and centered at the origin. b.

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24.
densities
In free space, two spherical surfaces at r = 1 and r = 2 carrying surface charge
8nC/m2 and - 6nC/m2 respectively.
Find the total flux exiting each of the following:
a.
The closed surface of sphere defined as r = 0.75
b.
The closed surface of sphere defined as r = 1.5
с.
The closed surface of sphere defined as r= 4
d.
The closed surface of the cube with sides equal to 20 and centered at the origin.
Transcribed Image Text:24. densities In free space, two spherical surfaces at r = 1 and r = 2 carrying surface charge 8nC/m2 and - 6nC/m2 respectively. Find the total flux exiting each of the following: a. The closed surface of sphere defined as r = 0.75 b. The closed surface of sphere defined as r = 1.5 с. The closed surface of sphere defined as r= 4 d. The closed surface of the cube with sides equal to 20 and centered at the origin.
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