Heat-Proof Chaotic Carbides Could Revolutionize Aerospace Technology
“High-entropy” carbides demonstrate plasmonic properties useful for a wide range of aerospace applications
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“High-entropy” carbides demonstrate plasmonic properties useful for a wide range of aerospace applications
A Republican candidate running in an Arizona primary would be the first Latina elected to office if she were to win November's midterm against Rep. Greg Stanton.
The newly discovered dinosaur is dubbed Ornatops. Scientists say it means “enchanted ornate face.” Author: Matt Yurus (12News) Updated: 10:45 AM MST April 14, 2021 PHOENIX — Volunteers working with the Arizona Museum of Natural History helped uncover a dinosaur believed to have roamed the earth 80 million years ago. The newly discovered dinosaur has been dubbed Ornatops. Scientists said it means “enchanted ornate face,” which derives from the crest shape sported on the bridge of its nose. But Andrew McDonald, the curator at the Western Science Center ...
Strengthened by Chaos, New Super-Hard Materials Will Stir Steel Together A nationwide collaboration led by researchers at Duke University’s Center for Autonomous Materials Design is working to synthesize inexpensive materials hard enough to literally stir two pieces of steel together with little wear and tear. Funded by a five-year, $7.5 million grant through the Department of Defense’s Multidisciplinary University Research Initiative (MURI) competition, the team will also develop a suite of AI-materials tools capable of the on-demand designing of similar materials with properties tailore...
E-Mail IMAGE: A Tetris-like grid of high-entropy carbides (blue) and borides (red) is expected to produce super-hard materials that can literally stir two pieces of steel together. view more Credit: Duke University A nationwide collaboration led by researchers at Duke University's Center for Autonomous Materials Design is working to synthesize inexpensive materials hard enough to literally stir two pieces of steel together with little wear and tear. Funded by a five-year, $7.5 million grant through the Department of Defense's Multidisciplinary University Research Initiative (MURI)...