A particle possessing q = 5.25 µC of charge and a mass of m = 3.55 g is fired at a speed of v = 459 cm/s between two horizontal charged plates of length L = 24.5 cm. + + + + + + + + + + + + + + + + Assume that the electric field between the plates is uniform and has a constant value of E = 1330 N/C, directed upwards. y = cm Calculate the distance y by which the charge falls below a straight-line path when it reaches the end of the plates. Assume a gravitational acceleration of g = 9.81m/s². What field strength will allow the particle to pass between the plates along a straight path? field strength: N/C

College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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A particle possessing q = 5.25 µC of charge and a mass of
m = 3.55 g is fired at a speed of v = 459 cm/s between two
horizontal charged plates of length L = 24.5 cm.
+ + + + + + + + + + + + + + + + + +
Assume that the electric field between the plates is uniform
and has a constant value of E = 1330 N/C, directed upwards.
y =
cm
Calculate the distance y by which the charge falls below a
straight-line path when it reaches the end of the plates.
Assume a gravitational acceleration of g = 9.81m/s².
What field strength will allow the particle to pass between the
plates along a straight path?
field strength:
N/C
Transcribed Image Text:A particle possessing q = 5.25 µC of charge and a mass of m = 3.55 g is fired at a speed of v = 459 cm/s between two horizontal charged plates of length L = 24.5 cm. + + + + + + + + + + + + + + + + + + Assume that the electric field between the plates is uniform and has a constant value of E = 1330 N/C, directed upwards. y = cm Calculate the distance y by which the charge falls below a straight-line path when it reaches the end of the plates. Assume a gravitational acceleration of g = 9.81m/s². What field strength will allow the particle to pass between the plates along a straight path? field strength: N/C
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