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programmable-matter

Explore materials that can change their physical properties - shape, color, stiffness, conductivity - on command. From shape-memory alloys to robotic swarms, discover the future of matter itself.

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Qu'est-ce que c'est ?

🎯 Conseils du simulateur

📚 Glossaire

ProgrammableMatter
Matériau qui modifie les propriétés sur commande
Claytronics
Vision de millions de minuscules robots formant des objets
Catom
Atome Claytronic - unité de Claytronics
ShapeMemoryAlloy
Métal qui reprend sa forme mémorisée lorsqu'il est chauffé
SMA
Alliage à mémoire de forme
SMP
Polymère à mémoire de forme
EAP
Polymère électroactif (muscle artificiel)
4DPrinting
Une impression 3D qui change de forme avec le temps
UtilityFog
Vision microscopique d’un essaim de robots
ModularRobotics
Robots à partir d'unités reconfigurables

🏆 Personnages clés

Seth Goldstein

Pionnier de la Claytronique

Skylar Tibbits

Impression 4D, laboratoire d'auto-assemblage

J. Storrs Hall

Concept de brouillard utilitaire

Daniela Rus

Robots auto-reconfigurables

💬 Message aux apprenants

{'encouragement': "You're exploring the boundary between matter and software. Programmable matter represents a future where the physical world becomes as flexible as the digital.", 'reminder': 'Current technology is far from T-1000, but every advance - shape-memory materials, modular robots, 4D printing - brings us closer to truly adaptive matter.', 'action': 'Build structures with virtual catoms in the simulator. Watch shape-memory materials transform. Design your own programmable matter applications.', 'dream': 'A materials scientist from Kenya might discover the perfect responsive polymer. An engineer from Nigeria might solve the power distribution problem. The matter of the future needs global innovation.', 'wiaVision': 'WIA Pin Code believes understanding future materials should be accessible to everyone. Matter that responds to thought and need could transform life globally.'}

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