8-EE) For BSEE. Much like Newton's law of gravity, Coulomb's law states that the force between two electrical charges varies as the product of the charges and inversely as the square of the distance between them: F = kq₁q₂/r² where F is in Newtons, q in coulombs, r in meters, and k = 9x10'Nm²/C². Given two small electrical charges q₁and a positioned on the x-axis as follows: q₁ = 4µC at x₁ =- 3m; 9₂ + 1µC and x₂ = + 2m. Find the position on the x-axis of a third electrical charge q, that experience no net force from these two.

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8-EE) For BSEE. Much like Newton's law of gravity, Coulomb's law states that the force between
two electrical charges varies as the product of the charges and inversely as the square of the
distance between them: F = kq₁q₂/r² where F is in Newtons, q in coulombs, r in meters, and
2
k = 9x10'Nm²/C². Given two small electrical charges q and a positioned on the x-axis as
3m; q₂ = + 1μC and x₂ = + 2m. Find the position on the
=-
4μC at x₁
9₁
x-axis of a third electrical charge q that experience no net force from these two.
follows: =
8
Transcribed Image Text:8-EE) For BSEE. Much like Newton's law of gravity, Coulomb's law states that the force between two electrical charges varies as the product of the charges and inversely as the square of the distance between them: F = kq₁q₂/r² where F is in Newtons, q in coulombs, r in meters, and 2 k = 9x10'Nm²/C². Given two small electrical charges q and a positioned on the x-axis as 3m; q₂ = + 1μC and x₂ = + 2m. Find the position on the =- 4μC at x₁ 9₁ x-axis of a third electrical charge q that experience no net force from these two. follows: = 8
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