Three charged particles of q, = 10.0 nC, 9, = -10.0 nC, and g, = 5.0 nC are placed on the y-axis, as shown in the figure. Charge q, has the coordinates (0, 8.00 cm), q, has the coordinates (o, -8.00 cm), and q, is located at the origin. (a) Find the electric potential energy (in J) of the configuration of the three fixed charges. (b) A fourth particle, with a mass of 2.01 x 10¬13 kg and a charge of 94 = 20.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed (in m/s) after it has moved freely to a very large distance away. m/s

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Chapter1: Units, Trigonometry. And Vectors
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Three charged particles of q,
10.0 nC, 9, = -10.0 nC, and q, = 5.0 n are placed on the y-axis, as shown in the figure.
y
9,
Charge q, has the coordinates (0, 8.00 cm), q, has the coordinates (0, -8.00 cm), and 9, is located at the origin.
(a) Find the electric potential energy (in J) of the configuration of the three fixed charges.
(b) A fourth particle, with a mass of 2.01 x 10-13 kg and a charge of 94 = 20.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed (in m/s) after it has
moved freely to a very large distance away.
m/s
Transcribed Image Text:Three charged particles of q, 10.0 nC, 9, = -10.0 nC, and q, = 5.0 n are placed on the y-axis, as shown in the figure. y 9, Charge q, has the coordinates (0, 8.00 cm), q, has the coordinates (0, -8.00 cm), and 9, is located at the origin. (a) Find the electric potential energy (in J) of the configuration of the three fixed charges. (b) A fourth particle, with a mass of 2.01 x 10-13 kg and a charge of 94 = 20.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed (in m/s) after it has moved freely to a very large distance away. m/s
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