3) A proton is placed at the origin. a) Assuming the potential goes to zero at infinity, calculate the distance from the origin, where the potential is 1 V. b) Repeat the problem with an electron instead of proton at the origin.
3) A proton is placed at the origin. a) Assuming the potential goes to zero at infinity, calculate the distance from the origin, where the potential is 1 V. b) Repeat the problem with an electron instead of proton at the origin.
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
Transcribed Image Text:3) A proton is placed at the origin.
a) Assuming the potential goes to zero at infinity, calculate the distance from the origin, where
the potential is 1 V.
b) Repeat the problem with an electron instead of proton at the origin.
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