3. A 52 uC charge moving with velocity v = 210i +120j [m/sec] passes through a region of space having combined uniform electric and magnetic fields. Given B = -10k [T], E = -200j [N/C], calculate the vector force acting on the charge.
3. A 52 uC charge moving with velocity v = 210i +120j [m/sec] passes through a region of space having combined uniform electric and magnetic fields. Given B = -10k [T], E = -200j [N/C], calculate the vector force acting on the charge.
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![3. A 52 uC charge moving with velocity v = 210i +120j [m/sec] passes through a region of space having
combined uniform electric and magnetic fields. Given B = -10k [T], E = -200j [N/C], calculate the
vector force acting on the charge.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3738e16a-10fd-4378-b4a3-b8733d2d5bb5%2Fd0f63bd8-0dc7-42c4-88e4-46c2a9600aee%2F15k7kl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. A 52 uC charge moving with velocity v = 210i +120j [m/sec] passes through a region of space having
combined uniform electric and magnetic fields. Given B = -10k [T], E = -200j [N/C], calculate the
vector force acting on the charge.
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