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Capacitor is an electronics device made from a 2 parallel plates conductor that can store energy as Electric field
Capacitance represents capacitor's capability to store energy as Electric field . Capacitor has a symbol
and measured in unit Farad

Capacitor can be made from 2 parallel plates

From above


Electric charge

Capacitance

Voltage

Voltage

Current

Power

Impedance

Reactance

Phase angle

Time constant
