A particle that carries a net charge of -59.8 µC is held in a constant electric field that is uniform over the entire region. The electric field vector is oriented 25.2° clockwise from the vertical axis, as shown in the figure. If the magnitude of the electric field is 6.32 N/C, how much work is done by the electric field as the particle is made to move a distance of d = 0.956 m straight up? work: AV = 3.27 x107 Incorrect What is the potential difference AV between the particle's initial and final positions? -4 5.46 Incorrect V d f 25.2° Ē

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Chapter1: Units, Trigonometry. And Vectors
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A particle that carries a net charge of −59.8 µC is held in a
constant electric field that is uniform over the entire region.
The electric field vector is oriented 25.2° clockwise from the
vertical axis, as shown in the figure. If the magnitude of the
electric field is 6.32 N/C, how much work is done by the
electric field as the particle is made to move a distance of
0.956 m straight up?
d
=
work:
3.27 ×10−4
AV =
Incorrect
What is the potential difference AV between the particle's
initial and final positions?
5.46
Incorrect
V
d
f
i
25.2°
E
Transcribed Image Text:A particle that carries a net charge of −59.8 µC is held in a constant electric field that is uniform over the entire region. The electric field vector is oriented 25.2° clockwise from the vertical axis, as shown in the figure. If the magnitude of the electric field is 6.32 N/C, how much work is done by the electric field as the particle is made to move a distance of 0.956 m straight up? d = work: 3.27 ×10−4 AV = Incorrect What is the potential difference AV between the particle's initial and final positions? 5.46 Incorrect V d f i 25.2° E
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