A certain parallel-plate capacitor is filled with a dielectric for which K = 4.16. The area of each plate is 0.0461 m², and the plates are separated by 2.64 mm. The capacitor will fail (short out and burn up) if the electric field between the plates exceeds 219 kN/C. What is the maximum energy that can be stored in the capacitor? Number i Units

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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A certain parallel-plate capacitor is filled with a dielectric for which K = 4.16. The area of each plate is 0.0461 m², and the plates are
separated by 2.64 mm. The capacitor will fail (short out and burn up) if the electric field between the plates exceeds 219 kN/C. What is
the maximum energy that can be stored in the capacitor?
Number i
Units
Transcribed Image Text:A certain parallel-plate capacitor is filled with a dielectric for which K = 4.16. The area of each plate is 0.0461 m², and the plates are separated by 2.64 mm. The capacitor will fail (short out and burn up) if the electric field between the plates exceeds 219 kN/C. What is the maximum energy that can be stored in the capacitor? Number i Units
A nonconducting sphere has radius R = 1.56 cm and uniformly distributed charge q = +3.65 fC. Take the electric potential at the
sphere's center to be Vo = 0. What is Vat radial distance from the center (a) r = 0.670 cm and (b) r = R? (Hint: See Module 23.6.)
(a) Number i
(b) Number i
Units
Units
Transcribed Image Text:A nonconducting sphere has radius R = 1.56 cm and uniformly distributed charge q = +3.65 fC. Take the electric potential at the sphere's center to be Vo = 0. What is Vat radial distance from the center (a) r = 0.670 cm and (b) r = R? (Hint: See Module 23.6.) (a) Number i (b) Number i Units Units
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