3. A cubical Gaussian surface is placed in a uniform electric field as shown in the figure. The length of each edge of the cube is 1.0 m. The uniform electric field has a magnitude of 5.0 x 10 N/C and passes through the left and right sides of the cube perpendicular to the surface. What is the total electric flux that passes through the cubical Gaussian surface? A. 5.0 x 10 N mC B. 3.0 x 10°N-m'/c C. 2.5 x 10° N-m/C D. 1.5 x 10'N-m²C E. zero N-m/C

University Physics Volume 2
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Chapter6: Gauss's Law
Section: Chapter Questions
Problem 63P: A long cylinder of copper of radius 3 cm is charged so that it has a uniform charge per unit length...
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3. A cubical Gaussian surface is placed in a uniform electric field as shown in the figure. The
length of each edge of the cube is 1.0 m. The uniform electric field has a magnitude of 5.0 x
10 N/C and passes through the left and right sides of the cube perpendicular to the surface.
What is the total clectric flux that passes through the cubical Gaussian surface?
. 5.0 x 10 N m/C
A.
B. 3.0 x 10°N-m/C
C. 2.5 x 10 N m/C
D. 1.5 x 10' N-m/C
E. zero N-m/C
Transcribed Image Text:Expert Q&A Done Please show work! 3. A cubical Gaussian surface is placed in a uniform electric field as shown in the figure. The length of each edge of the cube is 1.0 m. The uniform electric field has a magnitude of 5.0 x 10 N/C and passes through the left and right sides of the cube perpendicular to the surface. What is the total clectric flux that passes through the cubical Gaussian surface? . 5.0 x 10 N m/C A. B. 3.0 x 10°N-m/C C. 2.5 x 10 N m/C D. 1.5 x 10' N-m/C E. zero N-m/C
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