Gear Experimenter
Use observation, modeling, and testing to explore gear principles and build a clear working demonstrator.
THEME COURSES
Open a course to explore its theme, learning goals, creative steps, and student examples.
Use observation, modeling, and testing to explore gear principles and build a clear working demonstrator.
Use observation, modeling, and testing to explore pulley principles and build a clear working demonstrator.
Use observation, modeling, and testing to explore lever principles and build a clear working demonstrator.
Explore joints, linkages, and range of motion to build a stable robotic arm that follows a planned path.
Identify key components and motion needs, then design, assemble, and test a functional robot enclosure.
Explore gears and transmission paths, then design, assemble, and test a working gearbox.
Explore links, joints, and motion paths, then design, assemble, and test a working linkage.
Learn electronic components, interaction, and enclosure design to build a functional desktop fan.
Combine mechanisms, clues, and player interaction to create a puzzle box or solving device.
Analyze mobility, search, transport, and safety needs to design a robot for a clear rescue task.
Design a robot's movement and environmental functions for waste handling, monitoring, or ecosystem care.
Connect rules and player interaction with a functional dice-tower structure and cohesive visual design.
STUDENT WORKS
The same theme can produce different forms, functions, and stories—each work shows learner choice and iteration.
Choose a program and connect AI ideation, 3D design, and printing in one complete learning journey.