5. A cylinder with infinite length, relative permittivity of ε,, and radius of R is charged with uniform volume charge density of p. Using Gauss' law, derive the electric field, E, and electric flux density, D, inside and outside of the cylinder. Plot the electric field versus distance and discuss boundary conditions.

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5. A cylinder with infinite length, relative permittivity of ε, and radius of R is charged with
uniform volume charge density of p. Using Gauss' law, derive the electric field, E, and
electric flux density, D, inside and outside of the cylinder. Plot the electric field versus
distance and discuss boundary conditions.
Transcribed Image Text:5. A cylinder with infinite length, relative permittivity of ε, and radius of R is charged with uniform volume charge density of p. Using Gauss' law, derive the electric field, E, and electric flux density, D, inside and outside of the cylinder. Plot the electric field versus distance and discuss boundary conditions.
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