A 4.19-µC particle moves through a region of space where an electric field of magnitude 326 N/C points in the positive z direction, and a magnetic field of magnitude 0.0589 T points in the negative x direction. If the net force acting on the particle is 2.27 x 10-³ N in the negative z direction, find the magnitude and direction of the particle's velocity.
A 4.19-µC particle moves through a region of space where an electric field of magnitude 326 N/C points in the positive z direction, and a magnetic field of magnitude 0.0589 T points in the negative x direction. If the net force acting on the particle is 2.27 x 10-³ N in the negative z direction, find the magnitude and direction of the particle's velocity.
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![A 4.19-µC particle moves through a region of space where an electric
field of magnitude 326 N/C points in the positive z direction, and a
magnetic field of magnitude 0.0589 T points in the negative x
direction. If the net force acting on the particle is 2.27 x 10-³ N in the
negative z direction, find the magnitude and direction of the particle's
velocity.
10
Jus E
14²
net](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdecbc503-f7ca-431f-8b29-c7c060154cac%2F280622ca-d922-4b79-9ba1-8870e239a5d5%2Fdf2389l_processed.png&w=3840&q=75)
Transcribed Image Text:A 4.19-µC particle moves through a region of space where an electric
field of magnitude 326 N/C points in the positive z direction, and a
magnetic field of magnitude 0.0589 T points in the negative x
direction. If the net force acting on the particle is 2.27 x 10-³ N in the
negative z direction, find the magnitude and direction of the particle's
velocity.
10
Jus E
14²
net
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