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Figure 19   Capacitive Time Constant for Discharging Capacitor
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Electrical Science Volume 2 of 4
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ELECTRICAL SCIENCE Module 4 Batteries

CAPACITANCE DC Circuits Example: Find  the  time  constant  of  a  100 µF  capacitor  in  series  with  a  100resistor (Figure 20). Figure 20   Example - Capacitive Time Constant TC RC TC (100W)(100µF) TC 0.01  seconds Summary The important information on capacitors is summarized below. Capacitance Summary A capacitor is constructed of two conductors (plates) separated by a dielectric. A capacitor will store energy in the form of an electric field caused by the attraction of the positively-charged particles in one plate to the negatively- charged particles in the other plate. The attraction of charges in the opposite plates of a capacitor opposes a change in voltage across the capacitor. Capacitors in series are combined like resistors in parallel. Capacitors in parallel are combined like resistors in series. The capacitive time constant is the time required for the capacitor to charge (or discharge) to 63.2 percent of its fully charged voltage. ES-03 Page 18 Rev. 0

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