6. Three large parallel insulating sheets have surface charge densities +0.020 C/m², +0.010 C/m², and -0.020 Člm?, respectively as shown in the figure below. Adjacent sheets are a distance of 0.30 m from each other. Calculate the net electric field (magnitude and direction) due to all three sheets at point S (midway between sheets Il and II). +0.0200 C/m -0.0200 C/m 0.150 m 0. 150 m 0.150 m OIS0 m TXE +0.0100 C/m

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter25: Gauss’s Law
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Problem 32PQ: Two long, thin rods each have linear charge density = 6.0 C/m and lie parallel to each other,...
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6. Three large parallel insulating sheets have surface charge densities +0.020 C/m², +0.010 C/m²,
and -0.020 Člm?, respectively as shown in the figure below. Adjacent sheets are a distance of
0.30 m from each other. Calculate the net electric field (magnitude and direction) due to all three
sheets at point S (midway between sheets IlI and II).
+0.0200 C/m
-0.0200 C/m
0.150 m
0.150 m
0.150 m
OIS0 m
TXE
+0.0100 C/m
Transcribed Image Text:6. Three large parallel insulating sheets have surface charge densities +0.020 C/m², +0.010 C/m², and -0.020 Člm?, respectively as shown in the figure below. Adjacent sheets are a distance of 0.30 m from each other. Calculate the net electric field (magnitude and direction) due to all three sheets at point S (midway between sheets IlI and II). +0.0200 C/m -0.0200 C/m 0.150 m 0.150 m 0.150 m OIS0 m TXE +0.0100 C/m
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