This route · Guided Media & Evidence
A media- and dataset-supported route with supplied learner sheets, kaiako answers and a formative portfolio. SA:V, division rates and whole-cell evidence receive dedicated lessons.
Use supplied media, datasets, learner sheets and a formative portfolio to explain how cell structures and processes sustain life for Level 2 Biology.
Cells stay alive because transport, enzyme activity, energy transformations, DNA replication and division form one connected system. Across ten 60-minute lessons, ākonga move from structure–function reasoning to evidence-rich explanations that connect several biological ideas in context.
These are parallel Year 12 routes for the same external standard—not one course followed by the other. Choose one as your teaching spine, or remix by concept using the paired lesson links.
A media- and dataset-supported route with supplied learner sheets, kaiako answers and a formative portfolio. SA:V, division rates and whole-cell evidence receive dedicated lessons.
A fine-grained route that separates transport and enzyme mechanisms across paired lessons, builds ten formative exercise-book sections, and culminates in integrated exam-style explanation.
Either route supports later Level 3 work in homeostasis, genetic transfer and socio-scientific inquiry.
Science · Living World · Level 7 · Life processes:
“Explore the diverse ways in which animals and plants carry out the life processes.”
This unit develops that objective through plant and animal cell specialisation, membrane transport, photosynthesis, respiration, enzyme action, DNA replication and mitosis. Read the full curriculum and Level 2 Biology alignment.
Locate and describe relevant structures and processes, including facilitated diffusion, both process groups in photosynthesis, aerobic and anaerobic respiration, enzyme factors, semi-conservative DNA replication and mitosis.
Use biological mechanisms to explain how structure, resource availability and environmental conditions affect cellular activity.
Build sustained explanations that link several ideas to supplied evidence and to the functioning of a cell or organism.
All ten learner sheets: datasets, cell profiles, sorting cards, practice responses and the final synthesis context.
A ten-part printable record with evidence prompts, writing space and explicit checkpoints.
Preparation, indicative answers, formative moderation, source boundaries and media record.
Infer specialised cell roles from organelle evidence and distinguish observation from named knowledge sources.
Decide among diffusion, facilitated diffusion, osmosis and active transport in cell contexts.
Calculate, graph and explain how cell size constrains exchange.
Connect thylakoid and stroma processes and explain limiting-factor patterns.
Compare aerobic and anaerobic pathways and connect ATP supply to cell function.
Explain rate patterns involving temperature, pH, substrate, cofactors, coenzymes and inhibitors.
Sequence the cell cycle and connect semi-conservative replication to daughter-cell continuity.
Use simulated tissue evidence to explain direct and indirect resource effects on cell division.
Moderate teacher-authored responses and upgrade disconnected facts into causal explanations.
Integrate temperature, transport, photosynthesis, respiration and cell function using one dataset.