Question -3 down the electric flux (Ø) in terms of charge qenc , and ɛo . (b) Write down the electric flux (Ø) in terms of charge qenc , and ɛo permittivity constant, & qenc is the enclosed charge by the surface. In the given Figure there are two charges positive charge +q and negative charge -q . In the figure four closed surfaces (only cross-sections are shown) S1 , S2 , S3 , and S4 are shown. These closed surfaces are (a) Write . Eo is the called Gaussian Surfaces. (c) Determine the electric flux through four closed surfaces S1, S2 , S3 , and S4.

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Question -3
down the electric flux (Ø) in terms of
charge qenc , and ɛo . (b) Write
down the electric flux (Ø) in terms of
charge qenc , and ɛo
permittivity constant, & qenc is the
enclosed charge by the surface.
In the given Figure there are two
charges positive charge +q and
negative charge -q . In the figure four
closed surfaces (only cross-sections
are shown) S1 , S2 , S3 , and S4 are
shown. These closed surfaces are
(a) Write
. Eo is the
called Gaussian Surfaces. (c)
Determine the electric flux through four closed surfaces S1, S2 , S3 , and S4.
Transcribed Image Text:Question -3 down the electric flux (Ø) in terms of charge qenc , and ɛo . (b) Write down the electric flux (Ø) in terms of charge qenc , and ɛo permittivity constant, & qenc is the enclosed charge by the surface. In the given Figure there are two charges positive charge +q and negative charge -q . In the figure four closed surfaces (only cross-sections are shown) S1 , S2 , S3 , and S4 are shown. These closed surfaces are (a) Write . Eo is the called Gaussian Surfaces. (c) Determine the electric flux through four closed surfaces S1, S2 , S3 , and S4.
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