
Electrical reactance - Wikipedia
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 …
Electrical Reactance: What is it? (Inductive & Capacitive)
Apr 17, 2020 · A SIMPLE explanation of Reactance. Learn what Inductive & Capacitive reactance is, its formula, units, and Reactance vs Impedance vs Resistance. Plus we discuss ...
Impedance vs Reactance – Simple Guide with Formulas & Uses
Sep 3, 2025 · There are two types of reactance: capacitive reactance (X c) and inductive reactance (X L). Total reactance (X) is the difference between the two reactances: X = X L – X c.
23.2: Reactance, Inductive and Capacitive - Physics LibreTexts
The inductive reactance is found directly from the expression X L = 2 π f L. Once X L has been found at each frequency, Ohm’s law as stated in the Equation I = V / X L can be used to find …
Write the formula for determining total reactance (X); compute total reactance (X) in a series circuit; and indicate whether the total reactance is capacitive or inductive.
Electrical Reactance | Basic Alternating Current (AC) | TechWeb
Sep 26, 2024 · Inductive reactance increases with rising frequency, while capacitive reactance diminishes as frequency increases. These characteristics determine the current behavior …
Deriving The Reactance Formulas - Hackaday
Apr 29, 2025 · Engineers usually use vectors or imaginary numbers to deal with reactance, and we’ve talked about that too, if you want to learn more.
How to Calculate Reactance - PHYSICS CALCULATIONS
Jul 21, 2023 · This comprehensive guide covers how to calculate reactance, the formulas, step-by-step explanations, and FAQs to enhance your understanding.
Reactance and Impedance: Key Formulas & Differences Explained
Learn reactance and impedance for AC circuits with easy formulas, examples, and tips. Essential guide for JEE, NEET, and Class 12 Physics exams.
Inductive and Capacitive Reactance | Definition & Formula
The article provides an overview of inductive and capacitive reactance in AC circuits, explaining how these components influence current and voltage behavior.