An electric field has a uniform value (doesn't change with position) that can be described by the following equation: E = (Aĵ + B k) N/C where A and B are given by the values below. A = 1.35 B = 1.80 There is a flat circular surface that is in the x-y plane and centered at the origin point (0,0,0). This surface has a radius of 1.65 m. Calculate the magnitude of the electric flux through the surface due to the electric field described above. Your units should be Nm²/C.

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An electric field has a uniform value (doesn't change with position) that can be
described by the following equation:
E = (Aĵ + B k) N/C
where A and B are given by the values below.
A = 1.35
B = 1.80
There is a flat circular surface that is in the x-y plane and centered at the origin point
(0,0,0). This surface has a radius of 1.65 m.
Calculate the magnitude of the electric flux through the surface due to the electric
field described above. Your units should be Nm²/C.
Transcribed Image Text:An electric field has a uniform value (doesn't change with position) that can be described by the following equation: E = (Aĵ + B k) N/C where A and B are given by the values below. A = 1.35 B = 1.80 There is a flat circular surface that is in the x-y plane and centered at the origin point (0,0,0). This surface has a radius of 1.65 m. Calculate the magnitude of the electric flux through the surface due to the electric field described above. Your units should be Nm²/C.
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