Bursting dynamics that mimic the functions of the human brain pave the way for more efficient AI systems.
The high-throughput highway to computational optoelectronic semiconductor screening
High-throughput computational materials screening is turning out to be an efficient highway to optoelectronic semiconductor design.
Teleportation is possible, it just depends on scale
Using the principles of quantum mechanics, scientists are unlocking incredible computing powers one experiment at a time.
Are we dehumanizing chemistry?
There is a tremendous sense of joy and elation when a chemist discovers a new molecule, but if we dehumanize the art of science what is left?
What ever happened to combinatorial materials discovery?
Taking a look at the past, present, and future of combinatorial chemistry in materials research.
A stitch in time: How a quantum physicist invented new code from old tricks
An exciting and exotic approach to minimizing error in quantum computation re-purposes a known code to achieve what many researchers thought was impossible.
Gentle laser processing of perovskites at the nanoscale
Scientists have developed a method for precise, fast, and high-quality laser processing of halide perovskites, promising light-emitting materials for solar energy, optical electronics, and metamaterials.
Supercomputer simulates molecular model of SARS-CoV-2
Researchers at UT Austin hope their computer model of COVID-19 can help other scientists in developing new drugs against the virus.
Prof-Bot: The autonomous chemistry professor
Will artificial intelligence expand and enhance its teaching prowess to the point where it can replace the professor in his or her traditional role?
New DNA origami motor breaks speed record for nano machines
Scientists pave way for nanobots to one day diagnose and treat disease with the first DNA-based motor to run on chemical energy.