Best for
Years 5-8 science, electricity introductions, and practical investigations where students need precise component language and troubleshooting prompts.
Science • Years 5-8 • Physical science
Use this handout to help ākonga explain what a circuit needs, diagnose why a simple circuit is not working, and keep electricity investigations safe and purposeful.
This page already includes the concepts, diagnosis table, and response space. If you want it adapted for your own practical kit, year level, or integrated energy inquiry, Te Wānanga can rebuild it without losing the safe science sequence.
The page already includes the diagnosis and explanation materials students need before or after building circuits.
Use the companion page to connect this handout to physical-systems teaching, scientific explanation, and classroom-safe practical work. The strongest use is when students have to explain why the circuit works, not just copy a diagram.
Electricity is not just a diagram in a textbook. It shapes lighting, heating, communication, and how communities use and conserve energy. Strong classroom science keeps the concept precise while also asking students to think about responsible use.
Kaitiakitanga can sit naturally here too: where does energy come from, how is it used, and what does careful use look like?
Electricity needs a complete path so it can flow from the power source, through the load, and back again.
A cell, wires, and a load such as a bulb or LED all need correct connections to work.
| Component | What it does | What happens if it is missing or faulty? |
|---|---|---|
| Battery / cell | ||
| Wire | ||
| Bulb / LED | ||
| Switch |
You built a simple bulb circuit, but the bulb does not light. List two likely reasons and how you would check each one.
Classroom investigations should use low-voltage cells only. Explain one reason mains electricity is not used for this kind of practical activity.
Use the sentence frame: “The bulb is not lighting because...”
Complete the function table and give two plausible troubleshooting steps.
Compare how a switch changes the circuit and explain why that matters for safe control.
Students may respond through labelled diagrams, oral explanation, or full written sentences depending on readiness.
Curriculum alignment for this handout has not yet been verified against the live curriculum statements. A generated placeholder that stood here was removed on 2026-08-29 because it matched no real statement.
This resource sits within a kaupapa that recognises mātauranga Māori as a living knowledge system with its own frameworks, values, and ways of understanding the world. The New Zealand Curriculum calls for learning that reflects the bicultural partnership of Te Tiriti o Waitangi, which means every subject area has an obligation to engage authentically with Māori perspectives — not as cultural decoration but as substantive contributions to how we understand our topics. The concepts of manaakitanga (care for others), kaitiakitanga (guardianship), whanaungatanga (relationship and belonging), and tino rangatiratanga (self-determination) provide a values framework applicable across all learning areas, and all are relevant to the work in this handout.
This handout is designed to be used alongside the broader unit resources available at Te Kete Ako handouts library. This handout stands on its own; it is not part of a linked unit planner. All resources are provided — no additional preparation is required to use this handout in your classroom.