Researchers at the Universities of Konstanz and Stuttgart have demonstrated a new approach to computation: a computer made from a few hundred microscopic particles oscillating in a liquid. Instead of ...
Liquid-coupled microscopic particles can perform reservoir computing, predict chaotic signals and detect subtle anomalies with low hardware demands.
Animals and electronic devices aren't the only things with memory. Materials can retain memories of past deformations in their microscopic structure. A common example is a crease in a sheet of paper ...
Intensity-Dependent Memory Erasure: Under low rocking amplitudes, directional memory remains intact. As rocking intensity ...
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The world's largest and most powerful particle accelerator may be producing the world's tiniest droplets of liquid, right under scientists' noses. Researchers are digging into this subatomic enigma.
Scientists didn’t understand why independently oscillating microscopic particles suddenly begin moving in perfect sync when grouped together. Researchers showed that fluid-driven hydrodynamic ...
AMES, Iowa – Martin Thuo likes to look for new, affordable and clean ways to put science and technology to work in the world. His lab is dedicated to an idea called frugal innovation: “How do you do ...
What are Liquid Crystal Nanoparticles? Liquid crystal nanoparticles (LCNPs) are a unique class of nanomaterials that combine the properties of liquid crystals with the advantages of nanoparticles.