51. A monkey-shaped earring with a charge of 7vZ µC lies at the point (0, 1.0 m). A banana-shaped earring with a charge of -3vZ µC lies at the point (0, -1.0 m). Your goal is to find the net electric potential at the point (1.0 m, 0). (0, 1.0 m) +7V2 µC (1.0 m, 0) -3yZ µC, (0, -1.0 m): (A) Apply the distance formula to determine R, and R2.

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Chapter1: Units, Trigonometry. And Vectors
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Gauss's Law

51. A monkey-shaped earring with a charge of 7v2 µC lies at the point (0, 1.0 m). A
banana-shaped earring with a charge of -3VZ µC lies at the point (0, –1.0 m). Your goal is
to find the net electric potential at the point (1.0 m, 0).
(0, 1.0 m)
+7V2 µc
(1.0 m, 0)
-3y2 µC
(0, -1.0 m)
(A) Apply the distance formula to determine R, and R2.
(B) Determine the net electric potential at the point (1.0 m, 0).
Transcribed Image Text:51. A monkey-shaped earring with a charge of 7v2 µC lies at the point (0, 1.0 m). A banana-shaped earring with a charge of -3VZ µC lies at the point (0, –1.0 m). Your goal is to find the net electric potential at the point (1.0 m, 0). (0, 1.0 m) +7V2 µc (1.0 m, 0) -3y2 µC (0, -1.0 m) (A) Apply the distance formula to determine R, and R2. (B) Determine the net electric potential at the point (1.0 m, 0).
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