Capacitive reactance
Find the magnitude of capacitive reactance at a sinusoidal frequency; increasing frequency or capacitance lowers the opposition to alternating current.
Calculate inductive reactance using frequency and inductance in millihenries; it rises with frequency and becomes zero at direct current.
Calculate inductive reactance using frequency and inductance in millihenries; it rises with frequency and becomes zero at direct current.
Frequency (Hz): 50; Inductance (mH): 100.
Reactance magnitude: 31.42 Ω.
Calculate inductive reactance using frequency and inductance in millihenries; it rises with frequency and becomes zero at direct current. Ideal components without parasitic effects or losses. Reactance is a magnitude for sinusoidal AC. The RC cutoff assumes an unloaded first-order low-pass filter.
Results are rounded for display; calculations use unrounded values. Read our calculation methodology.
Calculate inductive reactance using frequency and inductance in millihenries; it rises with frequency and becomes zero at direct current.
Reactance magnitude = 2*pi*f*l/1000 Ω
| Input | What to enter |
|---|---|
| Frequency (Hz) | Enter a number of at least 0 and no more than 1000000000000. |
| Inductance (mH) | Enter a number of at least 0 and no more than 1000000000000. |
Calculate inductive reactance using frequency and inductance in millihenries; it rises with frequency and becomes zero at direct current. Ideal components without parasitic effects or losses. Reactance is a magnitude for sinusoidal AC. The RC cutoff assumes an unloaded first-order low-pass filter.
Reactance magnitude = 2*pi*f*l/1000 Ω