armature reactance - meaning and definition. What is armature reactance
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What (who) is armature reactance - definition

A CIRCUIT ELEMENT'S OPPOSITION TO CHANGES IN CURRENT DUE TO ITS INDUCTANCE OR CAPACITANCE
Capacitive reactance; Electric reactance; Reactance (physics); Reactance (electronics); Inductive reactance

Reactance (psychology)         
UNPLEASANT MOTIVATIONAL AROUSAL TO OFFERS, PERSONS, RULES, OR REGULATIONS THAT THREATEN OR ELIMINATE SPECIFIC BEHAVIORAL FREEDOMS
Psychological reactance; Reactance theory
Reactance is an unpleasant motivational reaction to offers, persons, rules, or regulations that threaten or eliminate specific behavioral freedoms. Reactance occurs when an individual feels that an agent is attempting to limit one's choice of response and/or range of alternatives.
reactance         
WIKIMEDIA DISAMBIGUATION PAGE
Reactance (disambiguation)
¦ noun Physics the non-resistive component of impedance in an AC circuit, arising from inductance and/or capacitance.
Armature (electrical)         
  • A schematic winding diagram for a DC machine with a commutator, showing a wave winding - shown as if the surface of the armature was flattened out
POWER-PRODUCING COMPONENT OF AN ELECTRIC MACHINE
Armature reaction drop; Armature reaction; Mush winding; Mush Winding; Lap winding; Wave winding; Armature (electrical engineering)
In electrical engineering, the armature is the winding (or set of windings) of an electric machine which carries alternating current.Stephen D.

Wikipedia

Electrical reactance

In electrical circuits, reactance is the opposition presented to alternating current by inductance and,or capacitance. Greater reactance gives smaller current for the same applied voltage. Reactance is similar to resistance in this respect, but does not lead to dissipation of electrical energy as heat; instead, energy is momentarily stored in the reactance, and a quarter-cycle later returned to the circuit.

Reactance is used to compute amplitude and phase changes of sinusoidal alternating current going through a circuit element. Like resistance, reactance is measured in ohms, with positive values indicating inductive reactance and negative indicating capacitive reactance. It is denoted by the symbol X {\displaystyle X} . An ideal resistor has zero reactance, whereas ideal inductors and capacitors have zero resistance. As frequency increases, inductive reactance increases and capacitive reactance decreases.