Three point-charges positioned at the corners of an equilateral triangle as shown. If ka = 9×109 N.m2 /c2 calculate: a. The potential at the midpoint on each side (A, B, C) b. The potential energy of the system: U c. The energy required to bring a fourth point charge (q0 = 2 uc ) from infinity to point A
Three point-charges positioned at the corners of an equilateral triangle as shown. If ka = 9×109 N.m2 /c2 calculate: a. The potential at the midpoint on each side (A, B, C) b. The potential energy of the system: U c. The energy required to bring a fourth point charge (q0 = 2 uc ) from infinity to point A
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Three point-charges positioned at the corners of an equilateral triangle
as shown. If ka = 9×109 N.m2 /c2
calculate:
a. The potential at the midpoint on each side (A, B, C)
b. The potential energy of the system: U
c. The energy required to bring a fourth point charge (q0 = 2 uc ) from
infinity to point A
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