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An isolated conducting sphere can be considered as a capacitor. The electric potential energy in (nJ) stored in an isolated conducting sphere with a radius a= 7.5 cm and has a charge q = 3.8 nC is:
capacitor has a capacitance of 16.4 µF and a charge of 6.5 mC. The capacitor is disconnected from the battery and a dielectric material of dielectric constant 2.7 is used to fill the space between the plates.The electric potential difference between its plates (in V) after inserting the dielectric material is:
A parallel-plate capacitor consists of two parallel, square plates that have dimensions 5 cm by 5 cm. If the plates are separated by 3.7 mm, and the space between them is filled with teflon, what is the capacitance of this capacitor (in pF)?
(The dielectric constant for teflon is 2.1, and ε
A 7.9 μF and a 3.5 μF capacitors are connected in series and a potential difference 8.9 V is applied across the combination. The potential difference across the 7.9 μF capacitor is:
Each of the three 8.6 μF capacitors shown is initially uncharged. How many coulombs of charge pass through the ammeter A after the switch S is closed?
In the shown Figure, what is the net electric potential (in ) at point P due to the four particles if at infinity, , and ?
A rod of length located along the x axis has a uniform linear charge density . Find the electric potential at a point located on the axis a distance from the rod end as shown.
Hint, assume that the potential is zero at infinity.