There is an electric flux of 35.5 N-m²/IC through the square region shown in the figure. Each side of the square has a length of 0.100 m, în is the unit vector normal to the plane of the surface, and the electric field is at an angle of 0 = 113.0° relative to the plane of the surface. Assuming that the field is uniform over the region shown, what is the magnitude E of the electric field? E = N/C
There is an electric flux of 35.5 N-m²/IC through the square region shown in the figure. Each side of the square has a length of 0.100 m, în is the unit vector normal to the plane of the surface, and the electric field is at an angle of 0 = 113.0° relative to the plane of the surface. Assuming that the field is uniform over the region shown, what is the magnitude E of the electric field? E = N/C
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![There is an electric flux of 35.5 N-m?/C through the square
region shown in the figure. Each side of the square has a
length of 0.100 m, în is the unit vector normal to the plane
of the surface, and the electric field is at an angle of
0 = 113.0° relative to the plane of the surface.
Assuming that the field is uniform over the region shown,
what is the magnitude E of the electric field?
E =
N/C](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F28b191f4-c7ed-4c48-8a0b-c728f7f79977%2F543deb90-6db8-438c-a359-82540a206f56%2F2wxk83k_processed.png&w=3840&q=75)
Transcribed Image Text:There is an electric flux of 35.5 N-m?/C through the square
region shown in the figure. Each side of the square has a
length of 0.100 m, în is the unit vector normal to the plane
of the surface, and the electric field is at an angle of
0 = 113.0° relative to the plane of the surface.
Assuming that the field is uniform over the region shown,
what is the magnitude E of the electric field?
E =
N/C
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