EASA / CAR Part-66 · Module 3 · 3.6 DC Circuits · Cat A · B1/B2

Ohm's Law, V = I × R

Objective: in a resistor the current is proportional to the voltage and inversely proportional to the resistance, V = I·R. Set the supply and the resistance and watch the current, the power dissipated, and the electrons flow faster or slower.

Circuit, with electron flow & meters

Current vs voltage

Voltage V
0V
Current I
0A
Resistance R
0Ω
Power P = V·I
0W
V = I·R  →  I = V/R  ·  Power: P = V·I = I²·R = V²/R

Voltage is the electrical "push" that drives current through a circuit; resistance opposes it. Ohm's law ties the three together: the current equals the voltage divided by the resistance, I = V/R. Double the voltage and the current doubles; double the resistance and the current halves. The current–voltage graph of a fixed resistor is a straight line through the origin, and its slope is 1/R, a steeper line means a smaller resistance. The power turned into heat in the resistor is P = V·I, which you can also write as I²R or V²/R.