We could call it an AC circuit "characteristic".. but not really a
>component. Lines of magnetic force moving across a conductor induce a
>current flow. This is part of our ignition coil and how many other circuits
>in a DC system..... the key being that the magnetic lines of force are >moving...
>
>Let's take a look at a simple relay coil..... When we "make" the circuit,
>current begins to flow through the windings.... as soon as the current
>starts to flow, magnetic lines of force start to move across the coil of
>wire. This induces current flow into the coil in the opposite direction as
>the applied force. Through a visious circle type scenario.... the coil is
>relatively slow to build to saturation since the reactance... the more
>current that flows, the more the magnetic field grows, the more it induces
>reactance..... in electronic terms (measured in nanoseconds in some cases
>and milliseconds in others), it stretches the event out incredibly.
>Inductive reactance.... impedance without resistance - hardly something
>exclusive to AC circuits.
>
>
hey warman let me SIMPLIFY THIS
xi=2FI xc=1/2fc
hmmmmm
2 0 =0
1/2 0 =0
hey u have a 0 the formula is invalid as no component of equation can = 0
yup i would say impedence is exclusive
how do ya get someting from nothing be sure to show your math
SCHOOLS OUT lmfao plonk
hurc ast