A small object has a charge of q = 3e, where e is the charge on an electron. (a) Determine the electric potential (in V) due to the charge at a distance r= 0.120 cm from the charge. (b) Determine the electric potential difference (in V) between a point that is 3r away and this point, that is V(3r) – V(r). (c) Determine the electric potential difference (in V) between a point that is away and this point, that is VE - v(r).

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 17P: Two particles each with charge +2.00 C are located on the x axis. One is at x = 1.00 m, and the...
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A small object has a charge of q = 3e, where e is the charge on an electron.
(a) Determine the electric potential (in V) due to the charge at a distance r= 0.120 cm from the charge.
(b) Determine the electric potential difference (in V) between a point that is 3r away and this point, that is V(3r) – V(r).
(c) Determine the electric potential difference (in V) between a point that is away and this point, that is VE - v(r).
Transcribed Image Text:A small object has a charge of q = 3e, where e is the charge on an electron. (a) Determine the electric potential (in V) due to the charge at a distance r= 0.120 cm from the charge. (b) Determine the electric potential difference (in V) between a point that is 3r away and this point, that is V(3r) – V(r). (c) Determine the electric potential difference (in V) between a point that is away and this point, that is VE - v(r).
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