In Fig. 190, the long filaments parallel to each other have linear charge densities λ = 80pC/m, each of them. The distance between the filaments is l = 40cm. Find the maximum value of the magnitude of the electric force on a test charge "qo" located at a point P of the plane of symmetry of this system, located between the filaments. (k = 9 x 10°Nm²/C²) | POq. 1/2 B Fig.190
In Fig. 190, the long filaments parallel to each other have linear charge densities λ = 80pC/m, each of them. The distance between the filaments is l = 40cm. Find the maximum value of the magnitude of the electric force on a test charge "qo" located at a point P of the plane of symmetry of this system, located between the filaments. (k = 9 x 10°Nm²/C²) | POq. 1/2 B Fig.190
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![In Fig. 190, the long filaments parallel to each other have linear charge densities λ =
80pC/m, each of them. The distance between the filaments is l = 40cm. Find the
maximum value of the magnitude of the electric force on a test charge "qo" located at a
point P of the plane of symmetry of this system, located between the filaments.
(k = 9 × 10°Nm²/C²)
1
POqo
1/2
B
Fig.190](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4b4d48fa-46ea-44c5-88e2-3c2d922f7aa0%2F68e2509a-b0d4-4037-8357-9645d9a34eb2%2F3thpcpp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In Fig. 190, the long filaments parallel to each other have linear charge densities λ =
80pC/m, each of them. The distance between the filaments is l = 40cm. Find the
maximum value of the magnitude of the electric force on a test charge "qo" located at a
point P of the plane of symmetry of this system, located between the filaments.
(k = 9 × 10°Nm²/C²)
1
POqo
1/2
B
Fig.190
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