Three charged particles are at the corners of an equilateral triangle as shown in the figure below. (Let q = 2.00 µC, and L = 0.650 m.) 7.00 μC L 60.0° -4.00 μC Ο (a) Calculate the electric field at the position of charge q due to the 7.00-µC and -4.00-µC charges. kN/C Î + |KN/C ĵ (b) Use your answer to part (a) to determine the force on charge q. mN Î mN î +

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Chapter23: Electric Fields
Section: Chapter Questions
Problem 23.38P: A uniformly charged disk of radius 35.0 cm carries charge with a density of 7.90 10-3 C/m2....
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Three charged particles are at the corners of an equilateral triangle as shown in the figure below. (Let q = 2.00 µC, and L = 0.650 m.)
7.00 μC
60.0°
-4.00 μCΟ
(a) Calculate the electric field at the position of charge q due to the 7.00-µC and -4.00-µC charges.
kN/C î +
kN/C ĵ
(b) Use your answer to part (a) to determine the force on charge q.
mN î +
mN j
Transcribed Image Text:Three charged particles are at the corners of an equilateral triangle as shown in the figure below. (Let q = 2.00 µC, and L = 0.650 m.) 7.00 μC 60.0° -4.00 μCΟ (a) Calculate the electric field at the position of charge q due to the 7.00-µC and -4.00-µC charges. kN/C î + kN/C ĵ (b) Use your answer to part (a) to determine the force on charge q. mN î + mN j
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