A 1 = 6.00 µC point charge is at the origin, and another point charge 92 =-3.00 µC is on %3D the x-axis at (3.00, 0) m, as in Figure. If the electric potential is taken to be zero at infinity, find the total electric potential due to these charges at point P with coordinates (0, 4.00) m. y (m) (0, 4.00) 12 x (m) (3.00, 0)

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Chapter1: Units, Trigonometry. And Vectors
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22. A 41 = 6.00 µC point charge is at the origin, and another point charge 92 = -3.00 µC is on
у (m)
the x-axis at (3.00, 0) m, as in Figure. If the electric potential is
taken to be zero at infinity, find the total electric potential due
to these charges at point P with coordinates (0, 4.00) m.
(0, 4.00)
12
•x (m)
(3.00, 0)
Transcribed Image Text:22. A 41 = 6.00 µC point charge is at the origin, and another point charge 92 = -3.00 µC is on у (m) the x-axis at (3.00, 0) m, as in Figure. If the electric potential is taken to be zero at infinity, find the total electric potential due to these charges at point P with coordinates (0, 4.00) m. (0, 4.00) 12 •x (m) (3.00, 0)
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