On the exam you are asked to solve for the electric potential created by a spher
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Question
On the exam you are asked to solve for the electric potential created by a spherically symmetric distribution of charge. Which of the following methods would you be able to employ?
Use Gauss' Law to solve for the electric field, and then conduct a path integral through that field.
Solve for the potential due to a spherical shell of charge, and then integrate the contributions due to a series of infinitesimally charged shells.
Both of these methods could produce the electric potential.
Neither of these methods are appropriate for this purpose.
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I reach into the bin of random electronic components and pull out a discharged capacitor. If I now put that capacitor across a high-voltage source....
The capacitance will be decreased.
The capacitance will remain unchanged.
The capacitance will be increased.
The change in capacitance will depend on the magnitude and orientation of the battery.
Use Gauss' Law to solve for the electric field, and then conduct a path integral through that field.
Solve for the potential due to a spherical shell of charge, and then integrate the contributions due to a series of infinitesimally charged shells.
Both of these methods could produce the electric potential.
Neither of these methods are appropriate for this purpose.
On the exam you are asked to solve for the electric potential created by a spherically symmetric distribution of charge. Which of the following methods would you be able to employ?Explanation / Answer
1.Both of these methods could produce the electric potential.
2.The capacitance will be decreased.
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