A large capacitance of 1.58 mF is needed for a certain application. (a) Calculate the area the parallel plates of such a capacitor must have if they are separated by 4.19 µm of Teflon, which has a dielectric constant of 2.1. (b) What is the maximum voltage that can be applied if the dielectric strength for Teflon is 60 ✕ 106 V/m (c) Find the maximum charge that can be stored. (d) Calculate the volume of Teflon alone in the capacitor. (units: m^3)

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Chapter19: Electric Potential And Electric Field
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Problem 68PE: Show that for a given dielectric material the maximum energy a parallel plate capacitor can store is...
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A large capacitance of 1.58 mF is needed for a certain application.

(a) Calculate the area the parallel plates of such a capacitor must have if they are separated by 4.19 µm of Teflon, which has a dielectric constant of 2.1.

(b) What is the maximum voltage that can be applied if the dielectric strength for Teflon is 60 ✕ 106 V/m

(c) Find the maximum charge that can be stored.

(d) Calculate the volume of Teflon alone in the capacitor. (units: m^3) 

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