4. Three charges are placed at the corners of a right triangle as shown in the figure at right. Both short sides of the triangle have a length of 2 meters. A. Sketch a vector that represents the total electric field at point x. (Point x is located halfway between the +3 µC charge and the -3 μC charge, along the hypotenuse.) I B. Determine the magnitude of the electric field at point x. -3pc C. Determine the force exerted on the +4μC charge, due to the other two charges. Show all work. D. Suppose an electron, with a mass of 9.1 x 10 kg is placed at point x. Determine the magnitude of the acceleration of the charge.

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Chapter24: Gauss’s Law
Section: Chapter Questions
Problem 24.46P: A thin, square, conducting plate 50.0 cm on a side lies in the xy plane. A total charge of 4.00 108...
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4. Three charges are placed at the corners of a right triangle as shown
in the figure at right. Both short sides of the triangle have a length of 2
meters.
A. Sketch a vector that represents the total electric field at point
x. (Point x is located halfway between the +3 µC charge and the
-3 μC charge, along the hypotenuse.)
I
B. Determine the magnitude of the electric field at point x.
-3μC
C. Determine the force exerted on the +4µC charge, due to the other two charges. Show all
work.
D. Suppose an electron, with a mass of 9.1 x 10¹ kg is placed at point x. Determine the
magnitude of the acceleration of the charge.
+3 μC
+4μC
Transcribed Image Text:4. Three charges are placed at the corners of a right triangle as shown in the figure at right. Both short sides of the triangle have a length of 2 meters. A. Sketch a vector that represents the total electric field at point x. (Point x is located halfway between the +3 µC charge and the -3 μC charge, along the hypotenuse.) I B. Determine the magnitude of the electric field at point x. -3μC C. Determine the force exerted on the +4µC charge, due to the other two charges. Show all work. D. Suppose an electron, with a mass of 9.1 x 10¹ kg is placed at point x. Determine the magnitude of the acceleration of the charge. +3 μC +4μC
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