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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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¿Qué es esto?

🎯 Consejos del simulador

📚 Glosario

ProgrammableMatter
Material que cambia de propiedades cuando se le ordena
Claytronics
Visión de millones de pequeños robots formando objetos.
Catom
Átomo Claytronic - unidad de Claytronics
ShapeMemoryAlloy
Metal que vuelve a su forma memorizada cuando se calienta.
SMA
Aleación con memoria de forma
SMP
Polímero con memoria de forma
EAP
Polímero electroactivo (músculo artificial)
4DPrinting
Impresión 3D que cambia de forma con el tiempo
UtilityFog
Visión de enjambre de robots microscópicos
ModularRobotics
Robots de unidades reconfigurables.

🏆 Figuras clave

Seth Goldstein

Pionero de Claytronics

Skylar Tibbits

Impresión 4D, Laboratorio de Autoensamblaje

J. Storrs Hall

Concepto de niebla utilitaria

Daniela Rus

Robots que se reconfiguran automáticamente

💬 Mensaje a los estudiantes

{'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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