1. Charges A, B and C form the vertices of an equilateral triangle. Each side length is 1.0 m. The charge values are given below. A B (a) Determine the total electric potential energy of the three charges. qA= -4.0 x 106 C QB = -4.0 x 10°C qc=+6.0 x 106 C (b) Determine the electric potential at a point mid way between A and B. I 2. Why does Electric Potential Energy have either a negative or positive value? Explain.
1. Charges A, B and C form the vertices of an equilateral triangle. Each side length is 1.0 m. The charge values are given below. A B (a) Determine the total electric potential energy of the three charges. qA= -4.0 x 106 C QB = -4.0 x 10°C qc=+6.0 x 106 C (b) Determine the electric potential at a point mid way between A and B. I 2. Why does Electric Potential Energy have either a negative or positive value? Explain.
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![1.
Charges A, B and C form the vertices of an equilateral triangle. Each side length is 1.0 m. The
charge values are given below.
A
B
(a) Determine the total electric potential
energy of the three charges.
qA= -4.0 x 106 C
QB = -4.0 x 10°C
qc = +6.0 x 106 C
(b) Determine the electric potential at a point
mid way between A and B.
I
2.
Why does Electric Potential Energy have either a negative or positive value? Explain.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F598b2f94-f00a-47d4-8051-e7a94724408f%2F64635997-13b6-462e-adc6-3c791a3d4a56%2Fwi9yfof_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1.
Charges A, B and C form the vertices of an equilateral triangle. Each side length is 1.0 m. The
charge values are given below.
A
B
(a) Determine the total electric potential
energy of the three charges.
qA= -4.0 x 106 C
QB = -4.0 x 10°C
qc = +6.0 x 106 C
(b) Determine the electric potential at a point
mid way between A and B.
I
2.
Why does Electric Potential Energy have either a negative or positive value? Explain.
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