Two conducting shapes are charged with +1µC and -1µC. There is a region between them (shown in grey in the figure) where their surfaces are flat and parallel and separated by 10-4m. The electric field in this region is uniform, points from one conductor to the second, and has a value of 5 x 105 N/C. Find the capacitance of this system. 313
Two conducting shapes are charged with +1µC and -1µC. There is a region between them (shown in grey in the figure) where their surfaces are flat and parallel and separated by 10-4m. The electric field in this region is uniform, points from one conductor to the second, and has a value of 5 x 105 N/C. Find the capacitance of this system. 313
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![Two conducting shapes are charged with +1µC and -1µC. There is a region between
them (shown in grey in the figure) where their surfaces are flat and parallel and separated by
10-4m. The electric field in this region is uniform, points from one conductor to the second,
and has a value of 5 x 105 N/C. Find the capacitance of this system.
ร](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdb365a3a-1283-4bc7-a508-a5addadd595c%2Ff328258f-f4cc-4541-840a-36c6b8000526%2Fjv403fc_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Two conducting shapes are charged with +1µC and -1µC. There is a region between
them (shown in grey in the figure) where their surfaces are flat and parallel and separated by
10-4m. The electric field in this region is uniform, points from one conductor to the second,
and has a value of 5 x 105 N/C. Find the capacitance of this system.
ร
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