Traditional magnetic separators, however, present a challenge: they generate a magnetic force that is very high near the side of the vessel closest to the magnet and decreases rapidly with distance.
Morning Overview on MSN
New magnetic polymer unlocks stronger, bendier artificial muscles for soft robots
Soft robots are only as capable as the artificial muscles that drive them, and for years those muscles have forced a trade-off between strength and flexibility. A new magnetic polymer design is ...
Interesting Engineering on MSN
New magnetic polymer enables stronger and more flexible artificial muscles in soft robotics
Despite their remarkable flexibility, today’s soft artificial muscles struggle to deliver meaningful force. This ...
Magnetic separation has become increasingly popular in biomedical science and industry. This technology uses magnetic properties of micro/nano-sized particles to separate macromolecules of interest, ...
Researchers at Chalmers University of Technology in Sweden published their findings in Advanced Materials, demonstrating a material that allows two competing magnetic forces to coexist within a single ...
'A force more powerful than gravity within the Earth': How magnetism locked itself inside our planet
"As the magma cooled to form what is today the world's solid outer crust, magnetism was locked into minerals containing iron, such as magnetite." When you purchase through links on our site, we may ...
The joint venture Astemo, a collaboration between Hitachi and Honda, has developed a new motor for battery-electric vehicles that completely eliminates the ...
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