Resistance and Ohm's Law
Aligned to the AQA 8463 specification
- Topic
- Electricity
- Level
- Advanced
- Reading time
- 5 min
- Published
- 2 July 2026
On this page
Key takeaways
- Resistance opposes the flow of charge; the greater the resistance of a component, the smaller the current for a given potential difference.
- Potential difference, current and resistance are linked by V = IR, where V is in volts (V), I is in amperes (A) and R is in ohms (Ω). You must recall and apply this equation.
- Required practical 3 shows that the resistance of a wire is directly proportional to its length at constant temperature: doubling the length doubles the resistance.
- Adding resistors in series increases the total resistance; adding resistors in parallel decreases the total resistance below that of the smallest resistor.
- Resistance is measured in ohms (Ω); one ohm is one volt per ampere.
Want more lessons like this one?
Generate lessons on anything you study. Free account, no card needed.
Key terms
- Resistance
- A measure of how much a component opposes the flow of electric charge, measured in ohms (Ω).
- Ohm
- The unit of resistance; one ohm equals one volt per ampere (1 Ω = 1 V/A).
- Ohmic conductor
- A component whose resistance stays constant at constant temperature, so current is directly proportional to potential difference.
- Directly proportional
- A relationship where doubling one quantity doubles the other, giving a straight-line graph through the origin.
Frequently asked questions
Potential difference = current × resistance, written V = IR. Rearranged, resistance R = V / I. Potential difference is in volts (V), current in amperes (A) and resistance in ohms (Ω). You must recall this equation; it is not on the sheet.
Resistance is directly proportional to length at constant temperature. Double the length and you double the resistance, so a graph of resistance against length is a straight line through the origin. This is the result of Required practical 3.
In series the resistances add up, so total resistance increases. In parallel the total resistance falls below the smallest single resistor, because there are more paths for the current to flow through.
Generate revision on any topic you study
Type any topic you're studying and Aicademy generates a complete lesson, quiz, and flashcard set, personalised to your level.
Lessons on anything
Structured, level-matched lessons on any topic you study
Practice quizzes
Find out what you actually know before the exam does
Flashcard sets
Lock in key concepts with instant revision cards
Ask Aica
Stuck on something? Get a clear explanation, any time
Circuit Symbols, Charge and Current
Resistors and Circuit Components
Related lessons
6 min
7 min
6 min
6 min