Three point charges are arranged as shown in the figure below. Find the magnitude and direction of the electric force on the particle q = 4.92 nC at the origin. (Let r,, = 0.225 m.) 6.576e-6 Use Coulomb's law to find the force that each charge exerts on the charge at the origin and combine the forces to find the net force. N magnitude direction ° counterclockwise from the +x axis y 6.00 nC 0.100 m -3.00 nC|
Three point charges are arranged as shown in the figure below. Find the magnitude and direction of the electric force on the particle q = 4.92 nC at the origin. (Let r,, = 0.225 m.) 6.576e-6 Use Coulomb's law to find the force that each charge exerts on the charge at the origin and combine the forces to find the net force. N magnitude direction ° counterclockwise from the +x axis y 6.00 nC 0.100 m -3.00 nC|
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
Transcribed Image Text:Three point charges are arranged as shown in the figure below. Find the magnitude and direction of the electric force on the
particle q = 4.92 nC at the origin. (Let r,2 = 0.225 m.)
6.576e-6
Use Coulomb's law to find the force that each charge exerts on the charge at the origin and combine the forces to
magnitude
find the net force. N
direction
° counterclockwise from the +x axis
y
6.00 nC
0.100 m
-3.00 nC |
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