The figure below shows two small, charged spheres separated by a distance of d = 2.50 cm. The charges are q, = -15.5 nC and = 25.5 nC. Point B is at the midpoint between the two charges, and point A is at the peak of an equilateral triangle, with each side of 92 length d, as shown. (Assume the zero of electric potential is at infinity.) d. 60.0° (a) What is the electric potential (in kV) at point A? kV (b) What is the electric potential (in kV) at point B? kV
The figure below shows two small, charged spheres separated by a distance of d = 2.50 cm. The charges are q, = -15.5 nC and = 25.5 nC. Point B is at the midpoint between the two charges, and point A is at the peak of an equilateral triangle, with each side of 92 length d, as shown. (Assume the zero of electric potential is at infinity.) d. 60.0° (a) What is the electric potential (in kV) at point A? kV (b) What is the electric potential (in kV) at point B? kV
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 9P: Given two particles with 2.00-C charges as shown in Figure P20.9 and a particle with charge q = 1.28...
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Step 1
Given that--
q1 = -15.5 nC
q2 = +25.5 nC
d = 2.50 cm
Question ❓
(A) potential at point A ?
(B) potential at point B ?
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