Scientists discover fractal patterns in a quantum material
The X-ray-focusing lens used in the experiment is based on a design used in lighthouses for centuries.
The X-ray-focusing lens used in the experiment is based on a design used in lighthouses for centuries.
Specialized sugar molecules called glycans can disarm opportunistic pathogens and prevent infection.
New technique could enable assembly of circuit boards and displays with more minute components.
Fluorescent probe could allow scientists to watch circuits within the brain and link their activity to specific behaviors.
Model from the Computer Science and Artificial Intelligence Laboratory identifies “serial hijackers” of internet IP addresses.
Study of minerals widely used in industrial processes could lead to discovery of new materials for catalysis and filtering.
MIT engineers develop a model that predicts how the cornstarch-water mixture turns from liquid to solid, and back again.
Ultrathin coating could protect 2D materials from corrosion, enabling their use in optics and electronics.
New structural design could lead to self-deploying tents or adaptive robotic fins.
Rapid imaging method could help reveal how conditions such as autism affect brain cells.
Results support Einstein’s theory and the idea that black holes have no “hair.”
Filaments with embedded circuitry can be used to print complex shapes for biomedical and robotic devices.
Nearly 30 MIT-affiliated researchers will share in the prize, while David Jay Julius ’77 wins Breakthrough Prize in Life Sciences; assistant professor of physics Max Metlitski shares New Horizons prize with Xie Chen PhD ’12 and Michael Levin PhD ’06.
Deaths of prominent life scientists tend to be followed by a surge in highly cited research by newcomers.
Magnetically controlled device could deliver clot-reducing therapies in response to stroke or other brain blockages.