Two charges of 1.0 μC are 0.50 m apart at two vertices of an equilateral triangle as in Figure P16.60. (a) What is the electric potential due to the 1.0-mC charge at the third vertex, point P ? (b) What is the electric potential due to the −2.0-μC charge atP ? (c) Find the total electric potential at P. (d) What is the work required to move a 3.0-μC charge from infinity to P?

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter26: Electric Potential
Section: Chapter Questions
Problem 68PQ: Figure P26.68 shows three small spheres with identical charges of 3.00 nC placed at the vertices of...
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Two charges of 1.0 μC are 0.50 m apart at two vertices of an equilateral triangle as in Figure P16.60. (a) What is the electric potential due to the 1.0-mC charge at the third vertex, point P ? (b) What is the electric potential due to the −2.0-μC charge atP ? (c) Find the total electric potential at P. (d) What is the work required to move a 3.0-μC charge from infinity to P?

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