Essential Task #5 m 1. Two large conducting parallel plates A and B are separated by 2.4m A uniform field of 1500 in the positive x-direction, is produced by charges on the plates. The center plane at x - 0.00m is an equipotential surface on which V = 0. An electron is projected from x = 0.00m, with an initial velocity of 1.0 x 10 perpendicular to the plates in the positive x-direction, as shown in the figure. What is the kinetic energy of the electron as it reaches plate A? (m² = 9.11 x 10-³¹ kg) 7 m el A B E = 1500 V/m x = -1.2 m V=0 x = +1.2 m I x = 0.00 m

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Essential Task #5
m
1. Two large conducting parallel plates A and B are separated by 2.4m A uniform
field of 1500 in the positive x-direction, is produced by charges on the plates.
The center plane at x - 0.00m is an equipotential surface on which V = 0. An
electron is projected from x = 0.00m, with an initial velocity of 1.0 x 10
perpendicular to the plates in the positive x-direction, as shown in the figure. What
is the kinetic energy of the electron as it reaches plate A? (m² = 9.11 x 10-³¹ kg)
7 m
el
A
B
E = 1500 V/m
x = -1.2 m
V=0
x = +1.2 m
I
x = 0.00 m
Transcribed Image Text:Essential Task #5 m 1. Two large conducting parallel plates A and B are separated by 2.4m A uniform field of 1500 in the positive x-direction, is produced by charges on the plates. The center plane at x - 0.00m is an equipotential surface on which V = 0. An electron is projected from x = 0.00m, with an initial velocity of 1.0 x 10 perpendicular to the plates in the positive x-direction, as shown in the figure. What is the kinetic energy of the electron as it reaches plate A? (m² = 9.11 x 10-³¹ kg) 7 m el A B E = 1500 V/m x = -1.2 m V=0 x = +1.2 m I x = 0.00 m
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