Two point charges each of magnitude 1.82 µC are located on the x axis. One is at x = 1.00 m and the other is at x = -1.00 m. (a) Determine the electric potential on the y axis at y = 0.370 m. kV (b) Calculate the change in electric potential energy of the system as a third charge of +3.08 ĀµC is brought from infinitely far away to a position on the y axis at y = 0.370m.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Two point charges each of magnitude 1.82 µC are located on the x-axis. One is at x = 1.00 m and the other is at x = -1.00 m.

(a) Determine the electric potential on the y-axis at y = 0.370 m.
\[ \_\_\_\_\_\_ \text{ kV} \]

(b) Calculate the change in electric potential energy of the system as a third charge of +3.08 µC is brought from infinitely far away to a position on the y-axis at y = 0.370 m.
\[ \_\_\_\_\_\_ \text{ J} \]

There are no graphs or diagrams included in the image.
Transcribed Image Text:Two point charges each of magnitude 1.82 µC are located on the x-axis. One is at x = 1.00 m and the other is at x = -1.00 m. (a) Determine the electric potential on the y-axis at y = 0.370 m. \[ \_\_\_\_\_\_ \text{ kV} \] (b) Calculate the change in electric potential energy of the system as a third charge of +3.08 µC is brought from infinitely far away to a position on the y-axis at y = 0.370 m. \[ \_\_\_\_\_\_ \text{ J} \] There are no graphs or diagrams included in the image.
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