Long, long ago, on a planet far, far away, a physics experiment was carried out. First, a 0.220-kg ball with zero net charge was dropped from rest at a height of 1.00 m. The ball landed 0.350 s later. Next, the ball was given a net charge of 7.80 μC and dropped in the same way from the same height. This time the ball fell for 0.635 s before landing.

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What is the electric potential at a height of 1.00 m above the ground on this planet, given that
the electric potential at ground level is zero? (Air resistance can be ignored.)
5 ΑΣΦ
AV =
xa
Xb
√x √x
f
18
t
X X |X|
SERET
?
X.10n
X
V
Transcribed Image Text:What is the electric potential at a height of 1.00 m above the ground on this planet, given that the electric potential at ground level is zero? (Air resistance can be ignored.) 5 ΑΣΦ AV = xa Xb √x √x f 18 t X X |X| SERET ? X.10n X V
Long, long ago, on a planet far, far away, a physics
experiment was carried out. First, a 0.220-kg ball
with zero net charge was dropped from rest at a
height of 1.00 m. The ball landed 0.350 s later.
Next, the ball was given a net charge of 7.80 μC
and dropped in the same way from the same
height. This time the ball fell for 0.635 s before
landing.
Transcribed Image Text:Long, long ago, on a planet far, far away, a physics experiment was carried out. First, a 0.220-kg ball with zero net charge was dropped from rest at a height of 1.00 m. The ball landed 0.350 s later. Next, the ball was given a net charge of 7.80 μC and dropped in the same way from the same height. This time the ball fell for 0.635 s before landing.
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