The drawing shows a square, each side of which has a length of L = 0.250 m. Two different positive charges 9₁ and 92 are fixed at the corners of the square. Find the electric potential energy of a third charge q3 = -3.00 x 109 C placed at corner A and then at corner B. A 91=+1.50 × 10-⁹C 92= +4.00 × 10⁹ c
The drawing shows a square, each side of which has a length of L = 0.250 m. Two different positive charges 9₁ and 92 are fixed at the corners of the square. Find the electric potential energy of a third charge q3 = -3.00 x 109 C placed at corner A and then at corner B. A 91=+1.50 × 10-⁹C 92= +4.00 × 10⁹ c
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![The drawing shows a square, each side of which has a length of L = 0.250 m. Two different positive charges 9₁ and 92 are fixed at the
corners of the square. Find the electric potential energy of a third charge q3 = -3.00 x 10-9 C placed at corner A and then at corner B.
B
A
91 = +1.50 × 10-⁹C 92= +4.00x 10-ºc](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F43830bf6-53ac-450f-bbfe-cd4038b33752%2F92536348-8373-4492-8338-5d01229857b7%2Fdf33wkl_processed.png&w=3840&q=75)
Transcribed Image Text:The drawing shows a square, each side of which has a length of L = 0.250 m. Two different positive charges 9₁ and 92 are fixed at the
corners of the square. Find the electric potential energy of a third charge q3 = -3.00 x 10-9 C placed at corner A and then at corner B.
B
A
91 = +1.50 × 10-⁹C 92= +4.00x 10-ºc
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