Calculate the work that the external force has to do to move the charge q = 10μC from the vertex of the isosceles triangle to the vertex of the equilateral triangle (see figure opposite).

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Chapter4: Diffraction
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Calculate the work that the external force has to do to move the charge q = 10μC from the vertex of the isosceles triangle to the vertex of the equilateral triangle (see figure opposite).
The value and signs of the charges of Q are the same, Q = 20μC. The distances between the charges shown in the figure are in units of d, where d = 1cm
Tip:
Calculate the difference of electric potentials between the final and the initial point where the charge q is located

kladowej
i od
E,
egłości od
Rw R,
b,
2d
*Q d *Q *Q
d.
R, = 12
R = 2 2
18 V
R, = 12
I, = 8 A
%3D
Transcribed Image Text:kladowej i od E, egłości od Rw R, b, 2d *Q d *Q *Q d. R, = 12 R = 2 2 18 V R, = 12 I, = 8 A %3D
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