▾ Find the change in electric potential energy of a 6.5-μC charge as it moves from the origin to the point (0, 6.0 m). Express your answer using one significant figure. VE ΑΣΦ AU = Part B AU = Find the change in electric potential energy of a 6.5-μC charge as it moves from the origin to the point (6.0 m, 0). Express your answer using two significant figures. 195] ΑΣΦ Part C 3 AU 0 DAMO → P ? Find the change in electric potential energy of a 6.5-4C charge as it moves from the origin to the point (6.0 m, 6.0 m). Express your answer using two significant figures. 95] ΑΣΦ g ? ? - J

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Y
Find the change in electric potential energy of a 6.5-μC
charge as it moves from the origin to the point (0, 6.0 m).
Express your answer using one significant figure.
ΜΕ ΑΣΦΑ
AU=
Part B
Find the change in electric potential energy of a 6.5-μC
charge as it moves from the origin to the point (6.0 m, 0).
Express your answer using two significant figures.
15. ΑΣΦ
AU=
Part C
FAME
AU =
?
Find the change in electric potential energy of a 6.5-μC
charge as it moves from the origin to the point (6.0 m, 6.0 m).
Express your answer using two significant figures.
195| ΑΣΦΑ
J
3
J
Transcribed Image Text:Y Find the change in electric potential energy of a 6.5-μC charge as it moves from the origin to the point (0, 6.0 m). Express your answer using one significant figure. ΜΕ ΑΣΦΑ AU= Part B Find the change in electric potential energy of a 6.5-μC charge as it moves from the origin to the point (6.0 m, 0). Express your answer using two significant figures. 15. ΑΣΦ AU= Part C FAME AU = ? Find the change in electric potential energy of a 6.5-μC charge as it moves from the origin to the point (6.0 m, 6.0 m). Express your answer using two significant figures. 195| ΑΣΦΑ J 3 J
A uniform electric field of magnitude 5.3x105 N/C points in the
positive direction.
D
Transcribed Image Text:A uniform electric field of magnitude 5.3x105 N/C points in the positive direction. D
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