A large capacitance of 1.40 mF is needed for a certain application. (a) Calculate the area (in m2) the parallel plates of such a capacitor must have if they are separated by 4.00 µm of Teflon. (b) What is the maximum voltage (in V) that can be applied? (c) Find the maximum charge (in C) that can be stored. (d) Calculate the volume (in m3) of Teflon alone in the capacitor.
A large capacitance of 1.40 mF is needed for a certain application. (a) Calculate the area (in m2) the parallel plates of such a capacitor must have if they are separated by 4.00 µm of Teflon. (b) What is the maximum voltage (in V) that can be applied? (c) Find the maximum charge (in C) that can be stored. (d) Calculate the volume (in m3) of Teflon alone in the capacitor.
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A large capacitance of 1.40 mF is needed for a certain application.
(a)
Calculate the area (in m2) the parallel plates of such a capacitor must have if they are separated by 4.00 µm of Teflon.
(b)
What is the maximum voltage (in V) that can be applied?
(c)
Find the maximum charge (in C) that can be stored.
(d)
Calculate the volume (in m3) of Teflon alone in the capacitor.
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