Four identical charged particles (q=+12.0 µC) are located on the corners of a rectangle as shown in the figure below. The dimensions of the rectangle are L = 62.0 cm and W = 19.0 cm. Calculate the change in electric potential energy of the system as the particle at the lower left corner in the figure is brought to this position from infinitely far away. Assume the other three particles in the figure below remain fixed in position.

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Four identical charged particles (q=+12.0 µC) are located on the corners of a rectangle as shown in the figure below. The dimensions of the rectangle are L = 62.0 cm and W = 19.0 cm. Calculate the
change in electric potential energy of the system as the particle at the lower left corner in the figure is brought to this position from infinitely far away. Assume the other three particles in the figure
below remain fixed in position.
X
If you know the electric potential at a particular point, how do you calculate the change in electrostatic potential energy if a charge is brought to that point? J
y
9
9
Need Help?
L
Read It
9
W
9
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Transcribed Image Text:Four identical charged particles (q=+12.0 µC) are located on the corners of a rectangle as shown in the figure below. The dimensions of the rectangle are L = 62.0 cm and W = 19.0 cm. Calculate the change in electric potential energy of the system as the particle at the lower left corner in the figure is brought to this position from infinitely far away. Assume the other three particles in the figure below remain fixed in position. X If you know the electric potential at a particular point, how do you calculate the change in electrostatic potential energy if a charge is brought to that point? J y 9 9 Need Help? L Read It 9 W 9 Watch it
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