A 6.43 C particle moves through a region of space where an electric field of magnitude 1300 N/C points in the positive direction, and a magnetic field of magnitude 1.03 T points in the positive Z direction. If the net force acting on the particle is 6.35E-3 N in the positive direction, calculate the magnitude of the particle's velocity. Assume the particle's velocity is in the - plane.
A 6.43 C particle moves through a region of space where an electric field of magnitude 1300 N/C points in the positive direction, and a magnetic field of magnitude 1.03 T points in the positive Z direction. If the net force acting on the particle is 6.35E-3 N in the positive direction, calculate the magnitude of the particle's velocity. Assume the particle's velocity is in the - plane.
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Find the magnitude please! thank you

Transcribed Image Text:A 6.43 C
particle moves through a region of space where an electric field of magnitude 1300 N/C points in the positive direction, and a magnetic field of
magnitude 1.03 T points in the positive Z direction. If the net force acting on the particle is 6.35E-3 N in the positive direction, calculate the magnitude of the
particle's velocity. Assume the particle's velocity is in the - plane.
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