Conventional electronics process information leveraging the electrical charge of electrons. Over the past few decades, some ...
Getting an up-close view of life at the cellular level can be as simple as placing onion skin under a microscope and adjusting the knobs. Peering deeper, into the heart of the atoms within, isn't as ...
The video opens with a bang of curiosity and ambition as Drake Anthony of the styropyro channel reveals his latest and most ...
A wafer-thin layer of rust, formed naturally in air, helped researchers spot a behavior many physicists have chased for decades. That oxide, hematite (α-Fe2O3), appeared on the top layer of a stacked ...
Tokamaks are circular machines that use strong magnets to trap superheated gas where fusion reactions take place. "NIIEFA is ...
New evidence suggests a rare triplet superconductor may help quantum computers stay in sync by preserving electron spin ...
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Swarming microrobots use spinning flows to turn gears without touching
E pluribus unum—"out of many, one"—is not only a motto for the United States; it's a good credo for microrobots. A research collaboration between Cornell and the Max Planck Institute for Intelligent ...
Researchers from the Max Planck Institute for Intelligent Systems (MPI-IS), the University of Michigan, and Cornell University have ...
KPMG reports that Asia Pacific fintech funding reached US$9.3 billion in 2025, with H2 data indicating the market may be ...
The crackle of electricity inside your brain has long been too complex to decode. Artificial intelligence is changing that.
Researchers use mini plasma explosions to encode the equivalent of two million books into a coaster-sized device. The method ...
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