What is the reactance of an inductor with an inductance of 330 h at a frequency of 850 hz. From the above equation for inductive reactance it can be seen that if either of the frequency or inductance was increased the overall inductive reactance value would also increase.
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It can store electrical energy.
What is inductor reactance. Inductive and capacitive reactance. Also it releases its stored energy as when required. Like resistance reactance is measured in ohms but is given the symbol x to distinguish it from a purely resistive r value and as the component in question is an inductor the reactance of an inductor is called inductive reactance x l and is measured in ohms.
The inductive reactance of an inductor depends on its inductance and the frequency that is applied. The magnitude of the reactance of an inductor rises in proportion to a rise in frequency while the magnitude of the reactance of a capacitor decreases in proportion to a rise in frequency. Its value can be found from the formula.
When the current in an inductor changes a back emf is created that opposes the change in current and the faster the initial change in current the greater the back emf. What is the inductance of an inductor whose reactance is 110 w at a frequency of 850 hz. A common form of inductor generally consists of a solenoid of conductors.
Reactance has two types. As the name suggests the inductor provided opposition is called inductance reactance where opposition by the capacitor is called capacitive reactance. This impedance is measured in ohms just like resistance.
An ideal resistor has zero reactance whereas ideal inductors and capacitors have zero resistance that is respond to current only by reactance. An inductor does this in the form of electromagnetic energy. It is possible to express this as a formula to calculate the reactance at a particular frequency.
The degree to which the inductor impedes the flow of current is due to its inductive reactance. What is the reactance of a capacitor with a capacitance of 380106 f at a frequency of 850 hz. The inductive reactance is frequency dependent rising with frequency but it can easily be calculated within straightforward formulas.
The reactance increases linearly with frequency. As the frequency approaches infinity the inductors reactance would also increase to infinity acting like an open circuit. Ac inductance and inductive reactance the opposition to current flow through an ac inductor is called inductive reactance and which depends lineally on the supply frequency inductors and chokes are basically coils or loops of wire that are either wound around a hollow tube former air cored or wound around some ferromagnetic material iron.
Any inductor resists a change in current as a result of lenzs law. Both are denoted by capital letter x with a subscript of l for the inductor and c for the capacitor. The inductor is a circuit element.
Inductive reactance is the name given to the opposition to a changing current flow.
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