A charge monkey took his three favorite point charges, qA = -35.7 nC, qB = 19.5 μC, and qc = 7.9 nC, to a nearby electric field that had the nicely mapped out equipotential contours you see in the figure. The charge monkey spent a pleasant afternoon kicking the little charges around the equipotential landscape along various trajectories, three of which are shown. Assume the monkey kicked the charges one a a time. How much did the electric potential energy change as the monkey kicked each charge along its indicated trajectory? A. AUE= B. AUE= C. AUE = HJ HJ HJ +15 V /+15 V +5 V -15 V -5 V OV

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A charge monkey took his three favorite point charges,
qA = -35.7 nC, qB = 19.5 μC, and qc = 7.9 nC,
to a nearby electric field that had the nicely mapped
out equipotential contours you see in the figure.
The charge monkey spent a pleasant afternoon kicking
the little charges around the equipotential landscape
along various trajectories, three of which are shown.
Assume the monkey kicked the charges one a a time.
How much did the electric potential energy change as the
monkey kicked each charge along its indicated trajectory?
A. AUE=
B. AUE=
C. AUE =
HJ
HJ
HJ
+15 V
/+15 V
+5 V
-15 V
-5 V
OV
Transcribed Image Text:A charge monkey took his three favorite point charges, qA = -35.7 nC, qB = 19.5 μC, and qc = 7.9 nC, to a nearby electric field that had the nicely mapped out equipotential contours you see in the figure. The charge monkey spent a pleasant afternoon kicking the little charges around the equipotential landscape along various trajectories, three of which are shown. Assume the monkey kicked the charges one a a time. How much did the electric potential energy change as the monkey kicked each charge along its indicated trajectory? A. AUE= B. AUE= C. AUE = HJ HJ HJ +15 V /+15 V +5 V -15 V -5 V OV
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