Veronika Koren talks about pursuing a theory of neural coding that doesn’t fit a simple narrative, and the resilience it took to see it through.
More flexible systems naturally expose a wider range of configurations and performance profiles. For AI-native developers, ...
As manufacturers embrace Industry 4.0, smart factories and connected operations, a different reality is emerging: smaller, ...
Living cells may generate electricity through the natural motion of their membranes. These fast electrical signals could play ...
The five-year, $584,034 project — “CAREER: Opening the Black Box: Advancing Interpretable Machine Learning for Computer Vision” — aims to bring greater transparency and accountability to AI-powered ...
ZME Science on MSN
Scientists Say the Constant Motion of Living Cells Could Be a Hidden Source of Electrical Power
The constant, energy-driven motion inside living cells may generate electricity in a way no one fully recognized before.
Quantum particles have a social life, of a sort. They interact and form relationships with each other, and one of the most ...
As the Institute’s first VP for energy and climate, Evelyn Wang ’00 is marshaling MIT’s expertise to meet the greatest ...
How market design shapes technologies’ futures, and what a genuinely hybrid storage landscape might look like by 2035 ...
Explore the challenges facing Pennsylvania's electrical grid as demand surges, driven by AI electrical grid innovations.
Belfast-based educational content provider offers teachers, parents and schools free access to one of the UK’s most comprehensive curriculum-aligned collections Quality education should be accessible ...
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