The idea
Components can be wired in a single loop (series) or on separate branches (parallel), and the two behave completely differently.
graph LR subgraph Series B1["Battery"] --> L1["Lamp 1"] --> L2["Lamp 2"] --> B1 end
graph LR subgraph Parallel B2["Battery"] --> N1(( )) N1 --> P1["Lamp 1"] --> N2(( )) N1 --> P2["Lamp 2"] --> N2 N2 --> B2 end
| Series | Parallel | |
|---|---|---|
| Current | Same everywhere | Splits between branches |
| Potential difference | Divides among components | Same across each branch |
| Total resistance | ||
| One component fails | Everything stops | The others keep going |
Why your house is wired in parallel
Every outlet gets the full , and unplugging a lamp does not switch off the fridge. Old Christmas lights were series — one dead bulb, and the whole string went dark.
Predict before you build
Two identical lamps in series, then the same two in parallel, on the same battery. Which arrangement is brighter, and why? Commit to an answer, then test it in Building Series and Parallel Circuits.
Curriculum connection
D2.6
construct series and parallel circuits to compare electric current, potential difference, and resistance in both types of circuits
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D2.4
investigate the relationships between electric current, potential difference, and resistance in electrical circuits, and develop a mathematical model to represent the relationships
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