Two large copper plates facing each other have charge densities £4.00 C/r on the surface facing the other plate, and zero in between the plates. Find the electric flux through a 3.00 cm x 4.00 cm rectangular area between the plates, as shown in Figure [1] for the following orientations of the area. |2| Figure 1 (a) The area is parallel to the plates. (b) The area is tilted 0 = 30.0° from the parallel direction. Note that this angle can also be 0 = 180° + 30.0°.

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Two large copper plates facing each other have charge densities £4.00 C/m² on the surface facing
the other plate, and zero in between the plates. Find the electric flux through a 3.00 cm x 4.00 cm
rectangular area between the plates, as shown in Figure for the following orientations of the area.
|7|
Figure 1
(a) The area is parallel to the plates.
(b) The area is tilted 0 = 30.0° from the parallel direction. Note that this angle can also be
180° + 30.0°.
Transcribed Image Text:Two large copper plates facing each other have charge densities £4.00 C/m² on the surface facing the other plate, and zero in between the plates. Find the electric flux through a 3.00 cm x 4.00 cm rectangular area between the plates, as shown in Figure for the following orientations of the area. |7| Figure 1 (a) The area is parallel to the plates. (b) The area is tilted 0 = 30.0° from the parallel direction. Note that this angle can also be 180° + 30.0°.
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