Mission catalogue
Thirteen runnable pilot lessons connect theory, a prediction, the shared Digital Twin, evidence and an engineering decision. They remain pilot lessons pending educator and classroom review.
Play
Enter the guided pilot lesson at an appropriate starting depth.
Learn
See the Grade 6-to-university curriculum and evidence progression.
Engineer
Open the same mission at university depth with provenance and V&V prompts.
MLX-01
Pilot lessonMission systems
Which step is holding the mission back?
Grades 6–12 · University
MLX-02
Pilot lessonSensors & estimation
Can you trust what the spacecraft tells you?
Grades 6–12 · University
MLX-03
Pilot lessonPower & thermal
Which spacecraft survives eclipse in better shape?
Grades 6–12 · University
MLX-04
Pilot lessonAttitude control
What does better pointing accuracy cost?
Grades 6–12 · University
MLX-05
Pilot lessonFeedback & control
Which damping strategy actually stops the tumble?
Grades 6–12 · University
MLX-06/07
Pilot lessonOrbit & communications
When is a satellite in view—and what does that prove?
Grades 6–12 · University
MLX-08
Pilot lessonPayload & data
Does a sharper camera get more useful data home?
Grades 6–12 · University
MLX-09
Pilot lessonThermal engineering
Why does one spacecraft run hotter?
Grades 6–12 · University
MLX-10
Pilot lessonConfiguration & budgets
Which design closes every declared budget?
Grades 9–12 · University
MLX-11
Pilot lessonMission operations
The payload worked. Why did almost no data arrive?
Grades 6–12 · University
MLX-13
Pilot lessonAutonomy & recovery
What rule should have existed before the fault?
Grades 11–12 · University
MLX-14
Pilot lessonVerification & validation
Does a short-run conclusion survive a longer test?
Grades 9–12 · University
All mission outputs shown in software are simulated, derived or reference evidence as labelled in MissionLab. They are not measured spacecraft results. MLX-12 is mapped academically but is not exposed as a runnable mission because the current runtime does not support its premise.