Four parallel plates are connected in a vacuum as shown in the picture. An electron with initial velocity, v = 1.02 × 10³m/s in the hole of plate X is accelerated to the right. Gravity is negligible once the electron passes through holes at W and Y. However due to the high air viscosity, the electrons loses 1.6 × 10-17J of energy between the plate W to plate Y. It then passes through the hole at Y and slows down as it heads to plate Z. Calculate the distance, in centimetres, from plate Z to the point at which the electron changes direction. +6.0 cm→6.0 cm→6.0 cm→ |X W Y 4.0 × 10² V 7.0 × 10³ V

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Four parallel plates are connected in a vacuum as shown in the picture. An electron with initial velocity,
1.02 x 10°m/s in the hole of plate X is accelerated to the right. Gravity is negligible once the electron
passes through holes at W and Y. However due to the high air viscosity, the electrons loses 1.6 × 10-17) of
1V =
energy between the plate W to plate Y. It then passes through the hole at Y and slows down as it heads to plate
Z. Calculate the distance, in centimetres, from plate Z to the point at which the electron changes direction.
- 6.0 cm→6.0 cm→<6.0 cm -
W
Y
4.0 x 10² V
7.0 × 103 V
N
Transcribed Image Text:Four parallel plates are connected in a vacuum as shown in the picture. An electron with initial velocity, 1.02 x 10°m/s in the hole of plate X is accelerated to the right. Gravity is negligible once the electron passes through holes at W and Y. However due to the high air viscosity, the electrons loses 1.6 × 10-17) of 1V = energy between the plate W to plate Y. It then passes through the hole at Y and slows down as it heads to plate Z. Calculate the distance, in centimetres, from plate Z to the point at which the electron changes direction. - 6.0 cm→6.0 cm→<6.0 cm - W Y 4.0 x 10² V 7.0 × 103 V N
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