An electron is fired with a v= 10° m/s into the space between two charged plates in the direction shown in the figure below. Determine the trajectory and coordinates of the electron so that the electron hits one of its plates. The charge and mass of the electron are e = 1,6x10-19C and m = 9,1x10-31 Kg. The electric field intensity in the space is 1 KN/C and the plate distance is 0.5 cm. + ++++++++++++++ v = 10°m/s

University Physics Volume 2
18th Edition
ISBN:9781938168161
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Chapter7: Electric Potential
Section: Chapter Questions
Problem 81P: A double charged ion is accelerated to an energy of 32.0 keV by the electric field between two...
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An electron is fired with a v =
10° m/s into the space between two charged plates in
the direction shown in the figure below. Determine the trajectory and coordinates of the
electron so that the electron hits one of its plates. The charge and mass of the electron are
e = 1,6x10-19C and m = 9,1x10-31 Kg. The electric field intensity in the space is 1 KN/C
and the plate distance is 0.5 cm.
+ +++++++++ +++++
v =
10°m/s
Transcribed Image Text:An electron is fired with a v = 10° m/s into the space between two charged plates in the direction shown in the figure below. Determine the trajectory and coordinates of the electron so that the electron hits one of its plates. The charge and mass of the electron are e = 1,6x10-19C and m = 9,1x10-31 Kg. The electric field intensity in the space is 1 KN/C and the plate distance is 0.5 cm. + +++++++++ +++++ v = 10°m/s
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