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Interesting Engineering on MSN‘Microflower’ structure amplifies magnetic fields 5x, can boost devices’ efficiencyScientists have developed a tiny flower-shaped structure that’s made of a nickel-iron alloy to concentrate and locally ...
Tiny magnetic "flowers" engineered by physicist Anna Palau are redefining how we manipulate magnetic fields. These ...
Pioneering new research could help unlock exciting new potential to create ultrafast, laser-driven storage devices. The study ...
Pioneering new research could help unlock exciting new potential to create ultrafast, laser-driven storage ...
A research paper by scientists at the University of Macau proposed a novel multi-section magnetic soft robot maneuvered by an associated collaborative multirobot navigation system with magnetic ...
Professor Eric Diller (MIE) and his collaborators have created a set of tools only a few millimetres in diameter, to grip, ...
Tiny flower-shaped magnetic structures boost local magnetic fields, enhancing sensor performance and enabling new ...
A flower-shaped structure only a few micrometers in size made of a nickel-iron alloy can concentrate and locally enhance ...
A flower-shaped structure only a few micrometres in size made of a nickel-iron alloy can concentrate and locally enhance magnetic fields. The size of ...
A flower-shaped structure only a few micrometres in size made of a nickel-iron alloy can concentrate and locally enhance magnetic fields. The size of the effect can be controlled by varying the ...
Josephson microwave microscopy integrating Josephson junctions onto a nanoprobe enables spectroscopic imaging of near-field ...
A theoretical study demonstrates magnetic force lowers blood pressure fluctuations and stabilises flow, setting the stage for ...
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