Theory
State what you will compare between two runs. Stage intent: compare energy.
For teachers
Everything you need to run the lesson: the prompts for this academic depth, the diagnostic answer key, the misconceptions to watch for, and the truth boundary to hold.
Every orbit, your spacecraft passes behind the Earth. For that stretch there is no sunlight, no power from the panels, and everything has to run off the battery. Your team will send two different spacecraft through the same shadow and work out which one comes through it in better shape.
These prompts come from the academic layer, so they change with the depth you selected.
State what you will compare between two runs. Stage intent: compare energy.
Predict which run will differ and in which direction.
Run a baseline and a comparison on the Twin. Runtime remains the frozen Twin; this plan does not execute physics.
Record the difference you observed.
Identify what changed and what stayed the same. Evidence intent: power table/budget + plot + operating recommendation.
Recommend which option better meets the classroom criterion.
Name at least one frozen-model limitation that this experiment cannot answer.
Keep simulated, simulated_sensor, estimator_state, derived, reference, and measured distinct. Never label simulated as measured.
A spacecraft passes into the Earth shadow. What happens to the electricity its solar panels make?
One session of 55–70 minutes. Adjust freely — the sequence matters more than the clock.
| When | Stage | What you are doing |
|---|---|---|
| 0 → 5–6 min | Mission | Set the role, objective, mission question, and success criterion. |
| 5–6 → 17–21 min | Preparation | Diagnostic, theory, and a written prediction before any run. |
| 17–21 → 20–25 min | Readiness | Learners confirm the local formative gate after preparation passes. |
| 20–25 → 35–45 min | Operate | Run the bounded baseline, then the candidate where comparison is disclosed. |
| 35–45 → 47–60 min | Evidence | Inspect provenance, select evidence, decide, state a limitation, and complete the formative assessment. |
| 47–60 → 53–68 min | Complete | Review the result band, reflect, and finalize local practice at any band. |
| 53–68 → 55–70 min | Recognition | Explain the local record and the separate future verified-recognition boundary. |
Authored lesson design — what a class reliably gets wrong here, and where you can catch it. Not a claim about any learner.
“The battery drained because it got cold in the shadow.”
Both traces fall together, which is why the story is tempting. Ask what is actually drawing the charge — the load, which never stopped — and what the cold is: another consequence of the same darkness, not its cause.
Watch: evidence — The battery and temperature comparison between the two spacecraft · Code: cause_effect_or_control_logic_reversal
“The larger spacecraft is better because it generates more.”
It does generate more, and it consumes more. Put both figures side by side and ask which one decides survival through an eclipse.
Watch: the decision option "Recommend the bigger one because bigger is better" · Code: constraint_budget_or_tradeoff_omission
What evidence most challenged your first assumption about the two spacecraft, and what remains uncertain?
Keep the larger spacecraft and work out what would have to change about its battery for it to leave the shadow in the same state as the smaller one. State which figure in your evidence you used.
The shadow in this run is one crossing. Describe what you would expect after several in a row, and say clearly whether your evidence supports that expectation or only suggests it.
Can the learner cite both the generated and consumed energy, and explain why a shortfall over one orbit is not automatically a failure?
Home mission: the energy budget
Over one orbit the small satellite made 5.22 Wh and used 9.54 Wh. Work out the difference. Then write one sentence explaining why a spacecraft can use more than it makes for part of an orbit and still be fine.
Ten questions, answered locally. Nothing is submitted or tracked — you download the file and send it if you want to.
This local-first form contains the ten approved pilot-review questions. It does not submit, track, or store data remotely. Optional name/contact should be handled outside this form only if a reviewer volunteers it.