Two parallel plates are positioned 5.00 cm apart with 3.00 x10o“ volts across them. The positive plate is at x = -2.50 cm and the negative plate is at x = +2.50 cm. (Assume negative is to the left and positive is to the right.) A point charge of 2.50 x106 C and 2.61 x10 14 kg is released from rest at x 0.00 m. The electric potential where the point charge is released from is V. The point charge will be accelerated to the (left/right) When the point charge reaches the plate, it will have a kinetic energy of J, or eV.

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Two parallel plates are positioned 5.00 cm apart with 3.00 x104 volts across them. The positive
plate is at x = -2.50 cm and the negative plate is at x = +2.50 cm. (Assume negative is to the left
and positive is to the right.)
A point charge of 2.50 x106 C and 2.61 x10 14 kg is released from rest at x = 0.00 m. The electric
potential where the point charge is released from is
V.
The point charge will be accelerated to the (left/right)
When the point charge reaches the plate, it will have a kinetic energy of
J, or
eV.
This means the point charge will be traveling at
m-s1 when it hits the plate.
Transcribed Image Text:Two parallel plates are positioned 5.00 cm apart with 3.00 x104 volts across them. The positive plate is at x = -2.50 cm and the negative plate is at x = +2.50 cm. (Assume negative is to the left and positive is to the right.) A point charge of 2.50 x106 C and 2.61 x10 14 kg is released from rest at x = 0.00 m. The electric potential where the point charge is released from is V. The point charge will be accelerated to the (left/right) When the point charge reaches the plate, it will have a kinetic energy of J, or eV. This means the point charge will be traveling at m-s1 when it hits the plate.
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