A parallel-plate capacitor is constructed

  1. A 12.0- A 12.0- A 12.0-V battery remains connected to a parallel plate capacitor with a plate area of 0.204m^2 and a plate
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  2. An electron traveling at 7.00 x 10^6 m/s enters and passes through a parallel plate capacitor. determine the electric field
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  3. The plates of a parallel plate capacitor are separated by a distance of 1.2cm, and the electric field within the capacitor has a
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  4. An electron is released from rest at the negative plate of a parallel plate capacitor and accelerates to the positive plate (see
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  5. An electron is released from rest at the negative plate of a parallel plate capacitor and accelerates to the positive plate (see
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  6. A parallel plate capacitor with plate separation d is connected to a battery. The capacitor is fully charged to Q Coulombs and a
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  7. A parallel plate capacitor with plate separation d is connected to a battery. The capacitor is fully charged to Q Coulombs and a
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  8. A parallel plate capacitor with plate separation d is connected to a battery. The capacitor is fully charged to Q Coulombs and a
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  9. A parallel-plate capacitor is constructed with circular plates of radius 5.6×10−2 m . The plates are separated by 0.27 mm ,
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  10. A parallel-plate capacitor is constructed with circular plates of radius 0.056 m. The plates are separated by 0.25 mm, and the
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