The figure below shows a closed cylinder with cross-sectional area A = 2.00m2. The constant electric field E has magnitude 3.50 X 103 N/C and is directed vertically upward, perpendicular to the cylinder's top and bottom surfaces so that no field lines pass through the curved surface. Calculate the electric flux through the cylinder's (a) top and (b) bottom surfaces. (c) Determine the amount of charge inside the cylinder
The figure below shows a closed cylinder with cross-sectional area A = 2.00m2. The constant electric field E has magnitude 3.50 X 103 N/C and is directed vertically upward, perpendicular to the cylinder's top and bottom surfaces so that no field lines pass through the curved surface. Calculate the electric flux through the cylinder's (a) top and (b) bottom surfaces. (c) Determine the amount of charge inside the cylinder
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The figure below shows a closed cylinder with cross-sectional area A = 2.00m2. The constant electric field E has magnitude 3.50 X 103 N/C and is directed vertically upward, perpendicular to the cylinder's top and bottom surfaces so that no field lines pass through the curved surface. Calculate the electric flux through the cylinder's (a) top and (b) bottom surfaces. (c) Determine the amount of charge inside the cylinder
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