Two horizontal plates of opposite charge create a constant electric field E, = 1000 N c directed vertically downwards (scc Figure). An clectron of mass m, and charge -e is fired horizontally with velocity = 0.1c between the plates. Calculate the clectron's acceleration; if the plates have length lo = 1 m, find the clectron's deflection from the horizontal when it cmerges. Neglect gravity in this calculation: is this justified?
Two horizontal plates of opposite charge create a constant electric field E, = 1000 N c directed vertically downwards (scc Figure). An clectron of mass m, and charge -e is fired horizontally with velocity = 0.1c between the plates. Calculate the clectron's acceleration; if the plates have length lo = 1 m, find the clectron's deflection from the horizontal when it cmerges. Neglect gravity in this calculation: is this justified?
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![Two horizontal plates of opposite charge create a constant electric field
E, = 1000 N c directed vertically downwards (scc Figure). An clectron
of mass m, and charge -e is fired horizontally with velocity = 0.1c
between the plates. Calculate the clectron's acceleration; if the plates have
length lo = 1 m, find the clectron's deflection from the horizontal when it
cmerges. Neglect gravity in this calculation: is this justified?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1a57496f-fef0-4b1c-8044-2d04700c177f%2F438968a2-c6bf-4534-8b39-d28ac0b7d0f0%2F0rm7pxp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Two horizontal plates of opposite charge create a constant electric field
E, = 1000 N c directed vertically downwards (scc Figure). An clectron
of mass m, and charge -e is fired horizontally with velocity = 0.1c
between the plates. Calculate the clectron's acceleration; if the plates have
length lo = 1 m, find the clectron's deflection from the horizontal when it
cmerges. Neglect gravity in this calculation: is this justified?
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