4. Two infinite conducting parallel plates are located at a distance of d = 0.5 cm from each other. Free charges with surface densities G, = 1 nCl/m2 and = 3 nCl/m2 are evenly distributed on the plates. Determine the electric field strength and its pot ential out side the plates and between the plates, plot the corresponding dependences E(x) and f(x), where the x- axis is perpendicular to the planes, On both sides of each of the plates determine the resulting charge density, as well as the density of the induced

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4. Two infinite conducting parallel plates are located
at a distance of d = 0.5 cm from each other.
Free charges with surface densities
G, = 1 nCl/m2 and = 3 nCl/m2 are evenly distributed on the plates. Determine the electric
field strength and its potential out side the plates and between the plates,
plot the corresponding dependences E(x) and f(x), where the x - axis
is perpendicular to the planes, On both sides of each of the plates
determine the resulting charge density, as well as the density of the induced
JAVLuposcharge. sapaa.
Transcribed Image Text:4. Two infinite conducting parallel plates are located at a distance of d = 0.5 cm from each other. Free charges with surface densities G, = 1 nCl/m2 and = 3 nCl/m2 are evenly distributed on the plates. Determine the electric field strength and its potential out side the plates and between the plates, plot the corresponding dependences E(x) and f(x), where the x - axis is perpendicular to the planes, On both sides of each of the plates determine the resulting charge density, as well as the density of the induced JAVLuposcharge. sapaa.
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