The ratio of charge to potential of an electrical device (capacitor) It's the ability of the capacitor to store electrical charge as its potential rises
In a capacitor or system of conductors and dielectrics, the property that permits the storage of electrically separated charges when potential differences exist between the conductors Capacitance is related to charge and voltage as follows: C = Q/V, where C is the capacitance in farads, Q is the charge in coulombs, and V is the voltage in volts
1 The capability of storing electrical charge Unit of measure is the Farad (F) 2 In a capacitor or system of conductors and dielectrics, the property that permits the storage of electrically separated charges when potential differences exist between the conductors Capacitance is related to charge and voltage as follows: C = Q/V, where C is the capacitance in farads, Q is the charge in coulombs, and V is the voltage in volts
That property of a system of conductors and dielectrics which permits the storage of electricity when potential difference exists between the conductors
The capacitance value expresses the ability of a capacitor to store electrical charge The unit of capacitance is the farad
The property of an electric nonconductor that permits the storage of energy as a result of electric displacement when opposite surfaces of the nonconductor are maintained at a difference of potential
The property of a system of conductors and dielectrics that permits the storage of electrically separated charges when potential differences exist between the conductors
{i} property of an insulator that allows energy to be stored due to the separation of the charge (Electricity)
The ratio of the charge on either plate of a capacitor to the potential difference between the plates capacitive reactance Reactance in an a-c circuit containing capacitance which causes a lagging voltage
The property of an electrical conductor (dielectric in a capacitor) that permits the storage of energy as a result of electrical displacement The basic unit of capacitance is the farad, however, measurement is more commonly in microfarads or picofarads