1. A disk of radius 0.10 m is oriented with its normal unit vector î is anti-parallel with the uniform electric field E of r= 0.10 m magnitude 2.0 x 10³ N/C. (Since this isn't a closed surface, it has no "inside" or "outside." That's why we have to 30° specify the direction of in the figure.) What is the electric flux through the disk? 2. An imaginary cubical surface of side L is in a region of uniform electric field E. Find the electric flux through each face of the cube and the total flux through the cube when the cube is turned by an angle e about a vertical axis. 90° – 0

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Chapter1: Units, Trigonometry. And Vectors
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1. A disk of radius 0.10 m is oriented with its normal unit
vector rî is anti-parallel with the uniform electric field E of r= 0.10 m
magnitude 2.0 x 10³ N/C. (Since this isn't a closed surface,
it has no "inside" or "outside." That's why we have to
30°
specify the direction of in the figure.) What is the electric
flux through the disk?
2. An imaginary cubical surface of side L is in a region of uniform
electric field E. Find the electric flux through each face of the cube
and the total flux through the cube when the cube is turned by an
angle 0 about a vertical axis.
90° - 0
Transcribed Image Text:1. A disk of radius 0.10 m is oriented with its normal unit vector rî is anti-parallel with the uniform electric field E of r= 0.10 m magnitude 2.0 x 10³ N/C. (Since this isn't a closed surface, it has no "inside" or "outside." That's why we have to 30° specify the direction of in the figure.) What is the electric flux through the disk? 2. An imaginary cubical surface of side L is in a region of uniform electric field E. Find the electric flux through each face of the cube and the total flux through the cube when the cube is turned by an angle 0 about a vertical axis. 90° - 0
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