For loads in the figure q = 8µC, q'= -5µC v = 9 x 104m/s, v' = 6.5 × 104m/s. When loads pass through positions in the way; a) Calculate the intensity and direction of the magnetic field formed by the q load on the q' load. b) Calculate the intensity and direction of the magnetic field generated by the q' charge on the q load. 0.400 m c) Calculate the size and direction of the magnetic force that the loads apply to each other. d) Calculate the electrical force and FE/FB ratio applied by the loads to each other. 0.300 m

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For loads in the figure q = 8µC, q'= -5µC
v = 9 x 104m/s, v' = 6.5 × 104m/s. When loads pass
through positions in the way;
a) Calculate the intensity and direction of the magnetic
field formed by the q load on the q' load.
b) Calculate the intensity and direction of the magnetic
field generated by the q' charge on the q load.
0.400 m
c) Calculate the size and direction of the magnetic force that the loads apply to each other.
d) Calculate the electrical force and FE/FB ratio applied by the loads to each other.
e) Calculate the intensity and direction of the net magnetic field at that point.
0.300 m
Transcribed Image Text:For loads in the figure q = 8µC, q'= -5µC v = 9 x 104m/s, v' = 6.5 × 104m/s. When loads pass through positions in the way; a) Calculate the intensity and direction of the magnetic field formed by the q load on the q' load. b) Calculate the intensity and direction of the magnetic field generated by the q' charge on the q load. 0.400 m c) Calculate the size and direction of the magnetic force that the loads apply to each other. d) Calculate the electrical force and FE/FB ratio applied by the loads to each other. e) Calculate the intensity and direction of the net magnetic field at that point. 0.300 m
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