83 In Fig. 24-66, point P is at distance di = 4.00 m from particle 1 (q = -2e) 41 and distance dz = 2.00 m from particle ida 2 (42 = +2e), with both particles fixed in place. (a) With V = 0 at infinity, what is V at P? If we bring a particle of charge q3 = +2e from infinity to P. Figure 24-66 Problem 83. (b) how much work do we do and (c) what is the potential energy of the three-particle system?

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Chapter1: Units, Trigonometry. And Vectors
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83 In Fig. 24-66, point P is at distance
di = 4.00 m from particle 1 (q = -2e) 41
and distance dz = 2.00 m from particle
ida
2 (42 = +2e), with both particles fixed
in place. (a) With V = 0 at infinity, what
is V at P? If we bring a particle of
charge q3 = +2e from infinity to P. Figure 24-66 Problem 83.
(b) how much work do we do and
(c) what is the potential energy of the three-particle system?
Transcribed Image Text:83 In Fig. 24-66, point P is at distance di = 4.00 m from particle 1 (q = -2e) 41 and distance dz = 2.00 m from particle ida 2 (42 = +2e), with both particles fixed in place. (a) With V = 0 at infinity, what is V at P? If we bring a particle of charge q3 = +2e from infinity to P. Figure 24-66 Problem 83. (b) how much work do we do and (c) what is the potential energy of the three-particle system?
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