10 N/C 10 N/C 10 N/C 10 N/C The figure shown above displays a cross section of a three-dimensional closed surface with a flat top and bottom surface parallel to the plane of the page. The three other faces are squares, with a length of 2.00 cm perpendiculan to the plane of the page. The electric field is everywhere parallel to the page and is uniform over each face of the surface. Choose the correct statement about the flux through the surface. The electric flux is 0.0N.m²/C. The electric flux is 6.93 x 103 N.m^2/C. The electric flux is 4.00 x 103 N.m^2/C. 000

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10 N/C
10 N/C
10 N/C
10 N/C
The figure shown above displays a cross section of a three-dimensional closed surface with a flat top and bottom
surface parallel to the plane of the page. The three other faces are squares, with a length of 2.00 cm perpendicular
to the plane of the page. The electric field is everywhere parallel to the page and is uniform over each face of the
surface. Choose the correct statement about the flux through the surface.
The electric flux is 0.0N.m² /C.
The electric flux is 6.93 x 103 N.m^2/C.
The electric flux is 4.00 x 103 N.m*2/C.
Transcribed Image Text:10 N/C 10 N/C 10 N/C 10 N/C The figure shown above displays a cross section of a three-dimensional closed surface with a flat top and bottom surface parallel to the plane of the page. The three other faces are squares, with a length of 2.00 cm perpendicular to the plane of the page. The electric field is everywhere parallel to the page and is uniform over each face of the surface. Choose the correct statement about the flux through the surface. The electric flux is 0.0N.m² /C. The electric flux is 6.93 x 103 N.m^2/C. The electric flux is 4.00 x 103 N.m*2/C.
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