All six known pairs
Solve voltage, current, resistance, and power from V-I, V-R, I-R, V-P, I-P, or R-P.
Enter your values, then calculate to see a verified result.
A clear calculation path based on your inputs.
Versioned calculationFormula v1.0.0
Solve voltage, current, resistance, and power from V-I, V-R, I-R, V-P, I-P, or R-P.
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Voltage and resistance20 mA is 0.02 AV = I x R and P = V x IVoltage, current, resistance, and power refer to the same element.
Power is ideal dissipation; component temperature and rating require margin and manufacturer data.
For nonlinear or reactive devices, use a device model or impedance analysis instead.
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All six valid V/I/R/P input pairs were independently solved, SI-prefix normalization was round-tripped, and invalid zero or negative denominators were rejected in JavaScript and PHP.
| Case | Inputs | Expected result |
|---|---|---|
| Voltage and resistance solve current and power | See the versioned calculator fixture. | {"current_amps":0.5,"power_watts":6,"pair_code":2} |
| Voltage and current solve resistance | See the versioned calculator fixture. | {"resistance_ohms":25,"power_watts":1,"pair_code":1} |
| Current and resistance solve voltage | See the versioned calculator fixture. | {"voltage_volts":9.4,"power_watts":0.188,"pair_code":3} |
This Ohm Law Calculator solves voltage, current, resistance, and power from any two positive known values. Choose V and I, V and R, I and R, V and P, I and P, or R and P; the calculator normalizes the selected SI prefixes and displays all four base-unit results.
The result describes one ideal linear resistive element. It is not a complete circuit simulator or electrical-safety approval.
Use a dedicated series, parallel, LED-resistor, voltage-drop, impedance, or thermal calculator when the circuit contains more than one ideal resistive relationship.
The base relationship is V = I x R. Electrical power is P = V x I, producing the derived forms P = I squared x R and P = V squared / R. Voltage and power solve I = P / V and R = V squared / P. Current and power solve V = P / I and R = P / I squared. Resistance and power solve V = square root of P x R and I = square root of P / R.
Every entered prefix is converted to the coherent SI base used by the equations, then the display produces both base and convenient alternate units.
With 12 V across 24 ohms, current is 12 / 24 = 0.5 A and power is 12 x 0.5 = 6 W. The same state can be displayed as 500 mA, 0.024 kiloohm, and 6,000 mW without changing the underlying quantities.
Confirm that both known values apply across and through the same element. A computed wattage describes ideal electrical dissipation; choose real components from manufacturer ratings with appropriate tolerance, temperature, voltage, transient, and safety margins.
Ohm law in this form assumes a linear resistive relationship. Diodes, LEDs, batteries, motors, capacitors, inductors, semiconductors, and many loads can be nonlinear, time-varying, or reactive. AC power can require RMS values, impedance, phase, and power factor. Never use this page as a substitute for qualified electrical design or safe isolation.
See the CalculatorGeek calculation methodology for formula sourcing, boundary testing, and correction handling.
Uses an explicit known-pair workflow, SI prefixes, all six pair equations, full derivation, and clear nonlinear, thermal, mains, and reactive-circuit boundaries.
Any positive pair among voltage, current, resistance, and power determines the other two in the ideal model.
Yes. Select the prefixes and the calculator normalizes them before applying the equations.
Substituting V = I x R into P = V x I gives P = I squared x R and P = V squared / R.
Not by itself. An LED has a nonlinear current-voltage curve and needs forward-voltage and current-limit data.
No. Real design also needs rating margin, ambient temperature, enclosure, pulse behavior, tolerance, and manufacturer data.
Method and sources reviewed 2026-09-26. The calculator shows its assumptions and does not replace an official eligibility decision, professional advice, or a measurement made under controlled conditions.
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