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Hexagonal electrohydraulic modules shape-shift into versatile robots

Researchers developed hexagonal robotic modules that can rearrange for different capabilities, enhancing adaptability and functionality in robotic design.

Electro-hydraulic muscles help these robot legs stand straight on uneven terrain | TechCrunch

ETH Zürich researchers developed a novel robot leg using electro-hydraulic systems for better performance on uneven terrain.

Hexagonal electrohydraulic modules shape-shift into versatile robots

Researchers developed hexagonal robotic modules that can rearrange for different capabilities, enhancing adaptability and functionality in robotic design.

Electro-hydraulic muscles help these robot legs stand straight on uneven terrain | TechCrunch

ETH Zürich researchers developed a novel robot leg using electro-hydraulic systems for better performance on uneven terrain.
morerobotics

Built-in bionic computing

Robots using soft materials in disaster management face challenges in flexible control.

Researchers create skin-inspired sensory robots to provide medical treatment

Soft robots with electronic skins and artificial muscles mimic natural movements, making them safe for internal use.
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