Three balls, with charges of +q, -2q, and +3q, are placed at the corners of a square measuring L on each side, as shown in the figure. The value of q is 1.80 x 10-6 C, and L = 70.0 cm. Assume this set of three balls is not interacting with anything else in the universe, and assume that gravitational interactions are negligible. +q L +3q (a) What is the magnitude of the net electrostatic force on the ball of charge -2q? X N (b) What is the magnitude of the net electrostatic force on the ball of charge +3q?

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Three balls, with charges of +9, -2q, and +3q, are placed at the corners of a square measuring L on each side, as shown in the figure. The value of q is 1.80 x 10-6 C, and L = 70.0 cm. Assume this
set of three balls is not interacting with anything else in the universe, and assume that gravitational interactions are negligible.
|
+q
L
➜
-29
+3q
(a) What is the magnitude of the net electrostatic force on the ball of charge -2q?
X N
(b) What is the magnitude of the net electrostatic force on the ball of charge +3q?
XN
Transcribed Image Text:Three balls, with charges of +9, -2q, and +3q, are placed at the corners of a square measuring L on each side, as shown in the figure. The value of q is 1.80 x 10-6 C, and L = 70.0 cm. Assume this set of three balls is not interacting with anything else in the universe, and assume that gravitational interactions are negligible. | +q L ➜ -29 +3q (a) What is the magnitude of the net electrostatic force on the ball of charge -2q? X N (b) What is the magnitude of the net electrostatic force on the ball of charge +3q? XN
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