The University of Missouri will help lead a national effort combining AI, computing and biology to advance synthetic cell ...
How do tissues cope with being stretched for hours or even days? A study led by researchers at the Institute for ...
In precision agriculture, where data is used to automate and optimize agricultural tasks for maximum yield, large-scale ...
Low-temperature plasma-assisted catalysis has emerged as a promising approach for activating chemically stable molecules under non-equilibrium conditions.
AI nuclear reactor simulation just cleared a decades-long engineering hurdle: Argonne National Laboratory has embedded a ...
Researchers developed a thiourea-derived surface treatment that combines a sub-nanometer sulfur-rich coating with a ...
In precision agriculture, where data is used to automate and optimize agricultural tasks for maximum yield, large-scale mapping and digital modeling ...
Scaling NoCs across chiplets requires earlier validation of coherency, congestion, thermal effects, and fault behavior.
Over the past few decades, rapid progress in both tissue engineering and regenerative medicine has revolutionized approaches to tissue regeneration and ...
As systems become more advanced, engineering intelligence cannot remain fragmented across isolated AI models that only ...
Virtual cell models that enable the prediction of cell behavior across scales and biological contexts are rapidly emerging at the forefront of drug discovery. Tom Sercu, PhD, vice president of AI and ...