Two plates, illustrated below, are at OV and 10000 V, respectively, and are separated by a distance 10 cm. A ball of mass 2 g and charge 8 µC is fired towards the positive plate with an initial speed of v=4.0 m/s and initial position 3 cm to the right of the left plate. OV 10,000 V IIIIIIIIIIII 10 cm ++++++ +++ A) Plot V as a function of distance between the two plates. Draw several equipotential lines on the schematic above. B) What is the magnitude of the electric field between the two plates? Please draw several vectors to indicate the direction of the E field. C) How far to the right does the charge travel? What prevents it from moving any further?

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Two plates, illustrated below, are at OV and 10000 V, respectively, and are
separated by a distance 10 cm.
A ball of mass 2 g and charge 8 µC is fired towards the positive plate with an
initial speed of v=4.0 m/s and initial position 3 cm to the right of the left plate.
OV
10,000 V
IIIIIIIIIIII
10 cm
++++++
+++
A) Plot V as a function of distance between the two plates. Draw several
equipotential lines on the schematic above.
B) What is the magnitude of the electric field between the two plates? Please
draw several vectors to indicate the direction of the E field.
C) How far to the right does the charge travel? What prevents it from moving any
further?
Transcribed Image Text:Two plates, illustrated below, are at OV and 10000 V, respectively, and are separated by a distance 10 cm. A ball of mass 2 g and charge 8 µC is fired towards the positive plate with an initial speed of v=4.0 m/s and initial position 3 cm to the right of the left plate. OV 10,000 V IIIIIIIIIIII 10 cm ++++++ +++ A) Plot V as a function of distance between the two plates. Draw several equipotential lines on the schematic above. B) What is the magnitude of the electric field between the two plates? Please draw several vectors to indicate the direction of the E field. C) How far to the right does the charge travel? What prevents it from moving any further?
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