Calculate the electric flux through the cube face in the plane z = 0 and the cube face in the plane z = L. For each face the normal points out of the cube. Express your answers in terms of some or all of the variables E1, E2, and L separated by a comma. Ф 0, Ф—L Previous Answers Request Answer Submit

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An imaginary cubical surface of side LL has its edges parallel to the x-, y- and z-axes, one corner at the point xx = 0, y = 0, z = 0 and the opposite corner at the point x=Lx=L, y=Ly=L, z=Lz=L. The cube is in a region of uniform electric field E⃗ =E1i^+E2j^E→=E1i^+E2j^, where E1E1 and E2E2 are positive constants. Calculate the electric flux through the cube face in the plane x = 0 and the cube face in the plane x=L. For each face the normal points out of the cube.

Calculate the electric flux through the cube face in the plane z= 0 and the cube face in the plane z=L. For each face, the normal points out of the cube.
Express your answers in terms of some or all of the variables E1, E2, and L separated by a comma.
 
Calculate the electric flux through the cube face in the plane z = 0 and the cube face in the plane z = L. For each face the
normal points out of the cube.
Express your answers in terms of some or all of the variables E1, E2, and L separated by a comma.
Ф 0, Ф—L
Previous Answers Request Answer
Submit
Transcribed Image Text:Calculate the electric flux through the cube face in the plane z = 0 and the cube face in the plane z = L. For each face the normal points out of the cube. Express your answers in terms of some or all of the variables E1, E2, and L separated by a comma. Ф 0, Ф—L Previous Answers Request Answer Submit
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