A uniform electric field of magnitude 3.3x10 N/C points in the positive a direction. Part A Find the change in electric potential energy of a 6.0-µC charge as it moves from the origin to the point (0, 6.0 m). Express your answer using one significant figure. ? AU = J Submit Request Answer Part B Find the change in electric potential energy of a 6.0-µC charge as it moves from the origin to the point (6.0 m, 0). Express your answer using two significant figures. AU = Part C Find the change in electric potential energy of a 6.0-uC charge as it moves from the origin to the point (6.0 m, 6.0 m). Express your answer using two significant figures. ? AU = J

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A uniform electric field of magnitude 3.3x105 N/C
points in the positive x direction.
Part A
Find the change in electric potential energy of a 6.0-µC
charge as it moves from the origin to the point (0, 6.0 m).
Express your answer using one significant figure.
να ΑΣφ
AU =
J
Submit
Request Answer
Part B
Find the change in electric potential energy of a 6.0-µC
charge as it moves from the origin to the point (6.0 m, 0).
Express your answer using two significant figures.
AU =
J
Part C
Find the change in electric potential energy of a 6.0-µC
charge as it moves from the origin to the point (6.0 m, 6.0 m).
Express your answer using two significant figures.
AU =
J
Transcribed Image Text:A uniform electric field of magnitude 3.3x105 N/C points in the positive x direction. Part A Find the change in electric potential energy of a 6.0-µC charge as it moves from the origin to the point (0, 6.0 m). Express your answer using one significant figure. να ΑΣφ AU = J Submit Request Answer Part B Find the change in electric potential energy of a 6.0-µC charge as it moves from the origin to the point (6.0 m, 0). Express your answer using two significant figures. AU = J Part C Find the change in electric potential energy of a 6.0-µC charge as it moves from the origin to the point (6.0 m, 6.0 m). Express your answer using two significant figures. AU = J
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