A capacitor of capacitance 400 µF is charged so that the potential difference between its plates is 5 V. How much charge (in mC) is transferred?
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A capacitor of capacitance 400 µF is charged so that the potential difference between its plates is 5 V. How much charge (in mC) is transferred?
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- A spec of dust with a static charge of +2 Coulombs is in between the plates of a parallel plate negatively charged plate. The electric field in the capacitor is meter. How much work would capacitor, where it rests on the 2200 Volts/meter, and the separation between the plates is 0.01 be done in moving the spec from the negative plate to the positive plate? O 4.4 V O 6.6V 2.2 V O -1.9 V O none of theseAn electron is released from rest at the negative plate of a parallel plate capacitor and accelerates to the positive plate (see the drawing). The plates are separated by a distance of 1.7 cm, and the electric field within the capacitor has a magnitude of 2.8 x 106 V/m. What is the kinetic energy of the electron just as it reaches the positive plate? Electric field Electron KE positive + + + + + + + +A parallel plate capacitor has metal plates, each of area 1.45 m², separated by 1.80 mm. What charge (in µC) is stored in this capacitor if a voltage of 2.70 × 103 v is applied to it?
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