The voltage between points A and D is [ Select] v. V. The change in the electric potential energy for q between points A and D is [ Select ] V J.

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Chapter1: Units, Trigonometry. And Vectors
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The voltage between points A and D is ( Select ]
v V.
The change in the electric potential energy for q between points A and D is
[ Select ]
J.
If the charge q were taken directly from A to D (without following the black path), then the change
of the electric potential energy for q would bv [ Select]
+1.2
J.
-1.2
+3
-3
Transcribed Image Text:The voltage between points A and D is ( Select ] v V. The change in the electric potential energy for q between points A and D is [ Select ] J. If the charge q were taken directly from A to D (without following the black path), then the change of the electric potential energy for q would bv [ Select] +1.2 J. -1.2 +3 -3
The three equipotential surfaces in the figure below are at the following potentials:
V1 = -2 V (blue line), V2 = -5 V (green), and V3 = + 4 V (pink)
The point A is on the inner-most equipotential surface (blue), point B on the middle surface (green),
point C at the outer-most surface (pink), and point D on the middle surface (green).
B
V3
A
V1
D
A charge q = -0.4 C is placed at the point A and then moved to point B, then to point C, and finally
to point D along the black path shown in the figure below.
B
D
Transcribed Image Text:The three equipotential surfaces in the figure below are at the following potentials: V1 = -2 V (blue line), V2 = -5 V (green), and V3 = + 4 V (pink) The point A is on the inner-most equipotential surface (blue), point B on the middle surface (green), point C at the outer-most surface (pink), and point D on the middle surface (green). B V3 A V1 D A charge q = -0.4 C is placed at the point A and then moved to point B, then to point C, and finally to point D along the black path shown in the figure below. B D
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