What would be electric field and electric potential of +q point charge if setting the potential at +100 V at infinity, rather than taking it to be zero there? Your answer: O A) Nothing; the electric field and the potential would have the same values at every finite point. B) The electric potential would become infinite at every finite point, and the electric field could not be defined. C) The electric potential everywhere would be 100 V higher, and the electric field would be the same. D) It would depend on the situation. For example, the potential due to a positive point charge would drop off more slowly with distance, so the magnitude of the electric field would be less. O E) None of the above.

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What would be electric field and electric potential of +q point charge if setting the potential at +100 V at infinity, rather than taking it to be zero there?
Your answer:
O A) Nothing; the electric field and the potential would have the same values at every finite point.
B) The electric potential would become infinite at every finite point, and the electric field could not be defined.
C) The electric potential everywhere would be 100 V higher, and the electric field would be the same.
D) It would depend on the situation. For example, the potential due to a positive point charge would drop off more slowly with distance, so the magnitude of
the electric field would be less.
O E) None of the above.
Transcribed Image Text:What would be electric field and electric potential of +q point charge if setting the potential at +100 V at infinity, rather than taking it to be zero there? Your answer: O A) Nothing; the electric field and the potential would have the same values at every finite point. B) The electric potential would become infinite at every finite point, and the electric field could not be defined. C) The electric potential everywhere would be 100 V higher, and the electric field would be the same. D) It would depend on the situation. For example, the potential due to a positive point charge would drop off more slowly with distance, so the magnitude of the electric field would be less. O E) None of the above.
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