Two particles, with charges of q1 = 40.0 nC and q2 = -40.0 nC, are placed at the points with coordinates (0, 8.00 cm) and (0, –8.00 cm) as shown in the figure below. A particle with charge q3 = 20.0 nC is located at the origin. (a) Find the electric potential energy of the configuration of the three fixed charges.Do not include q4 in this calculation. (b) A fourth particle, q4, with a mass of 1.62 × 10-13 kg and a charge of q4 = 80.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed after it has moved freely to a very large distance away. m/s

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Two particles, with charges of q1 = 40.0 nC and q2 = -40.0 nC, are placed at the points with coordinates (0, 8.00 cm) and (0, –8.00 cm) as shown in the figure below.
A particle with charge q3 = 20.0 nC is located at the origin.
(a) Find the electric potential energy of the configuration of the three fixed charges.Do not include q4 in this calculation.
(b) A fourth particle, q4, with a mass of 1.62 × 10-13 kg and a charge of 94 = 80.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed after it has
moved freely to a very large distance away.
m/s
Transcribed Image Text:Two particles, with charges of q1 = 40.0 nC and q2 = -40.0 nC, are placed at the points with coordinates (0, 8.00 cm) and (0, –8.00 cm) as shown in the figure below. A particle with charge q3 = 20.0 nC is located at the origin. (a) Find the electric potential energy of the configuration of the three fixed charges.Do not include q4 in this calculation. (b) A fourth particle, q4, with a mass of 1.62 × 10-13 kg and a charge of 94 = 80.0 nC, is released from rest at the point (6.00 cm, 0). Find its speed after it has moved freely to a very large distance away. m/s
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