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For teachers

Prepare a mission

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.

Choose the mission and depth

Working hard gets hot.

Space is not a good place to lose heat. There is no air to carry it away, so a spacecraft running its camera and radio has to get rid of that heat through its own structure. Your team will run the same demanding workload on two spacecraft and see how differently they cope.

Pilot lesson

What to say at University

These prompts come from the academic layer, so they change with the depth you selected.

Theory

State professional terminology, lineage, and model-limit questions. Stage intent: lumped-model limits.

Prediction

Predict where the model is expected to be useful and where it is not.

Running the Twin

Inspect allowed lineage/hash channels only if the profile discloses them. Runtime remains the frozen Twin; this plan does not execute physics.

Checkpoint

Separate simulated, derived, reference, and (if ever present) measured evidence.

Analysis

Design, integrate, verify, and validate within frozen Core V1 limits. Evidence intent: temperature/power plot + envelope/trade explanation.

Engineering decision

Produce a V&V-style conclusion that does not claim flight qualification.

Limitation

Name at least one frozen-model limitation that this experiment cannot answer.

Provenance

Keep simulated, simulated_sensor, estimator_state, derived, reference, and measured distinct. Never label simulated as measured.

Diagnostic answer key

Why does electronics running in space get hotter than the same electronics on Earth?

  • There is no air to carry the heat away
  • · Space is hot
  • · Electricity works differently in space

Timing

One session of 55–70 minutes. Adjust freely — the sequence matters more than the clock.

Suggested lesson timing
WhenStageWhat you are doing
0 → 5–6 minMissionSet the role, objective, mission question, and success criterion.
5–6 → 17–21 minPreparationDiagnostic, theory, and a written prediction before any run.
17–21 → 20–25 minReadinessLearners confirm the local formative gate after preparation passes.
20–25 → 35–45 minOperateRun the bounded baseline, then the candidate where comparison is disclosed.
35–45 → 47–60 minEvidenceInspect provenance, select evidence, decide, state a limitation, and complete the formative assessment.
47–60 → 53–68 minCompleteReview the result band, reflect, and finalize local practice at any band.
53–68 → 55–70 minRecognitionExplain the local record and the separate future verified-recognition boundary.

Misconceptions to watch for

Authored lesson design — what a class reliably gets wrong here, and where you can catch it. Not a claim about any learner.

The temperatures differ because one spacecraft's payload is working harder.

The payload workload is identical in both runs. Send the learner back to the setup: any explanation resting on the payload has not read it.

Watch: evidence — The temperature and battery comparison between the two spacecraft · Code: cause_effect_or_control_logic_reversal

The smaller spacecraft is the better design because it uses less energy.

It also reaches a much higher peak temperature. Ask which limit decides whether the electronics survive the run at all.

Watch: the decision option "Recommend the smaller one because it uses less energy" · Code: constraint_budget_or_tradeoff_omission

Space is cold, so a spacecraft cannot overheat.

There is no air to carry heat away. Ask how the heat is supposed to leave, and let the class discover that radiating is the only route.

Watch: the "heat" diagnostic · Code: cause_effect_or_control_logic_reversal

Reflection and extension

What a good reflection contains

Which spacecraft property most influenced temperature, and what physical measurement would you need before trusting the result?

  • Attributes the temperature difference to the spacecraft, not to the payload, which is identical in both runs.
  • Names the peak temperature reached by the smaller spacecraft and says what it would mean for real electronics.
  • Distinguishes this scenario — the spacecraft working hard — from the eclipse mission, where the driver was darkness.

If they finish early, or go further

  • Set the thermal limit (Grades 9–10 and above)

    Choose a temperature you would refuse to exceed, justify it, then say which of the two spacecraft your limit rules out and by how much.

  • Two causes, one symptom (Grade 8 and above)

    This mission and the eclipse mission both end with a battery under pressure, for different reasons. Write one sentence for each that names its actual driver.

Facilitation and the truth boundary

While they work

  • The payload workload is identical in both runs. Any learner explaining the difference by the payload has not read the setup.
  • The small satellite reaches a much higher peak. Ask what would happen to real electronics at that temperature.
  • This is the same runtime as the shadow mission but a different scenario. There the driver was darkness; here it is the spacecraft working hard.

Can the learner explain the temperature difference in terms of the spacecraft, given that the workload was identical?

Hold this line

  • The temperature and battery numbers are produced by a model. Nothing here was measured on a real spacecraft.
  • The two spacecraft are teaching profiles, not real hardware designs.
  • This lesson does not show that either design would survive a real mission.

Home mission

Home mission: nowhere to put the heat

Find something at home that gets warm when it works - a laptop, a charger, a lamp. Find where its heat escapes. Then write one sentence on what would happen to it if there were no air around it at all.

Tell us what did not work

Ten questions, answered locally. Nothing is submitted or tracked — you download the file and send it if you want to.

Informal educator feedback

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.