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Ohm's Law Calculator

Enter any two of voltage, current, resistance, or power to solve for the rest.

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About the Ohm's Law Calculator

Solves for any two unknowns among voltage, current, resistance, and power in a simple DC circuit, using Ohm's Law and the power identities derived from it — enter any two known values and it computes the other two.

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How to use it
  1. Enter any two of Voltage, Current, Resistance, or Power.
  2. Leave the other two fields blank.
  3. Read the two solved values in the result panel, alongside the two you entered.
Formula
Ohm's Law: V = I × R (Voltage = Current × Resistance). Power identities derived from it: P = V × I = I²R = V²/R. Given any two of {V, I, R, P}, the other two follow algebraically — e.g. given V and R: I = V/R and P = V²/R.
Worked example

With Voltage = 12V and Current = 2A given: Resistance = 12 ÷ 2 = 6Ω, and Power = 12 × 2 = 24W.

Ohm's Law quick-reference — solving for each variable
Ohm's Law quick-reference — solving for each variable
Known pairVoltageCurrentResistancePower
V, IV/IV×I
V, RV/RV²/R
I, RI×RI²×R
V, PP/VV²/P
I, PP/IP/I²
R, P√(P×R)√(P/R)
Interpreting your result

This models a simple resistive DC circuit only — it doesn't account for AC impedance/reactance, temperature-dependent resistance, or non-ohmic components (like diodes or transistors) whose resistance isn't constant. Enter exactly two known values; entering fewer leaves the circuit underdetermined, and entering more than two over-constrains it (and could be inconsistent).

Recommendations
  • If Current is 0, Resistance and Power can't be solved from Voltage and Current alone (division by zero) — that's an open circuit, not a valid two-value input for this pair.
  • Resistance of 0Ω models a short circuit — Current and Power become undefined from Voltage and Resistance in that case too.
  • Power scales with the square of both Current (P=I²R) and Voltage (P=V²/R) — doubling either one quadruples power dissipated, not just doubles it.
Frequently asked questions
Ohm's Law states that voltage equals current times resistance (V = I × R) in a simple resistive circuit — named after Georg Ohm, who published the relationship in 1827.