2) through the plane perpendicularly to it, as shown in the figure below. The top and bottom area of the cylinder is A. What is the total flux through the cylinder? Give your answer in terms of the given quantities only. Consider an infinite charged plane with surface charge density +20. An imaginary cylinder is cutting Avea =A +20
2) through the plane perpendicularly to it, as shown in the figure below. The top and bottom area of the cylinder is A. What is the total flux through the cylinder? Give your answer in terms of the given quantities only. Consider an infinite charged plane with surface charge density +20. An imaginary cylinder is cutting Avea =A +20
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![Consider an infinite charged plane with surface charge density +20. An imaginary cylinder is cutting
2)
through the plane perpendicularly to it, as shown in the figure below. The top and bottom area of the cylinder
is A. What is the total flux through the cylinder? Give your answer in terms of the given quantities only.
- Avea =A
,+26](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1606b766-bfa8-4083-9557-a4bb20db7c66%2F4a73495a-bbe1-406c-9f27-d6e4d08cf3c5%2Fh0aik1k_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider an infinite charged plane with surface charge density +20. An imaginary cylinder is cutting
2)
through the plane perpendicularly to it, as shown in the figure below. The top and bottom area of the cylinder
is A. What is the total flux through the cylinder? Give your answer in terms of the given quantities only.
- Avea =A
,+26
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