It's been a long time since Alice Charton got a good look at a human face. There are plenty of people moving through her world, of course—her husband, her friends, her doctors, her neighbors—but ...
A recent report by a team of physicists at McGill University concluded that in order to build smaller yet still high-performing computer chips, designers will need to focus on better understanding how ...
Researchers at Forschungszentrum Jülich and the Leibniz Institute for Innovative Microelectronics (IHP) have developed a material that has never existed before: a stable alloy of carbon, silicon, ...
Current copper wiring in computer chips struggles to carry electricity efficiently as circuits shrink to the nanoscale, leading to a process that generates heat and limits performance. These materials ...
Graphene nanoribbons have a current-carrying capacity two orders of magnitude higher than copper Recent research into the properties of graphene nanoribbons provides two new reasons for using the ...
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The future of chips: how gate-all-around design is powering the AI era and the next node
Artificial intelligence (AI) is transforming how the world builds and uses computer chips. From massive data centers to devices at the edge of the network, AI requires chips continuing to get faster, ...
Explore how the Apple M4 chip desktop enhances iMac performance, creative workflows, and future Apple silicon innovations shaping next-generation computing for professionals and creators. Pixabay, ...
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