On Oct. 3, 1950, three Bell Labs scientists received a patent for a "three-electrode circuit element" that would usher in the transistor age and the era of modern computing.
Serendipitous meetings, scholarly collaborations, and an ethos of "encouraging junior faculty to think big" laid the groundwork for groundbreaking achievement in AI.
A team in Sweden has unraveled the hidden structure of a promising solar material using machine learning and advanced simulations. Their findings could unlock durable, ultra-efficient solar cells for ...
John Clarke, Michel H. Devoret and John M. Martinis demonstrated quantum tunneling in an electrical circuit, with implications for the next generation of quantum technology.
Imagine being able to compose an email or steer a wheelchair directly with your thoughts. For millions of people living with neurological disorders such as ALS, this possibility could be life-changing ...
In the 1980s, John Clarke, Michel Devoret and John Martinis demonstrated quantum effects in an electric circuit, an advance that underlies today’s quantum computers.
How did the world of bits and bytes become the second-largest source of demand for construction workers, trailing only residential housing?
Alan Turing and John von Neumann saw it early: the logic of life and the logic of code may be one and the same.
Google is now letting developers preview the Gemini 2.5 Computer Use model behind Project Mariner and agentic features in AI Mode.
New $2.66 million grant from the National Science Foundation will support the construction of a 96-qubit quantum computer to enable future advances in the field.
It may have its roots in science fiction, but a small number of researchers are making real progress trying to create computers out of living cells. Welcome to the weird world of biocomputing. Among ...
The model, Gemini 2.5 Computer Use, uses a combination of visual understanding and reasoning to analyze user’s requests and carry out tasks in the browser. It will complete all of the actions required ...