
AI Could Save the Planet, If It Can Get the Power to Do It
A major LSE study says AI could cut emissions by billions of tonnes annually — but only if it gets enough clean electricity. Where does that power come from?
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New global initiative brings physics, materials science, engineering, artificial intelligence, industrialisation and professional training into a distributed architecture built around one objective: turning validated physical effects into reproducible systems.

Every time a large language model answers a question, something burns. Not metaphorically.

Somewhere in the architecture of EU policy, two offices are working against each other. One is writing energy strategy.

At the commencement of the new millennium, humanity stands at a crossroads, facing the dual challenges of fostering innovation and ensuring sustainability.

Hydrogen, inherently colorless and devoid of scent, becomes a pivotal agent in combating climate change only when its origin is renewable sources…

In the ever-evolving landscape of renewable energy research, one technology stands out as a promising beacon of hope for a sustainable future: Neutrinovoltaics.

China's economy is celebrated for its magnificent magnitude, and now this magnificence extends to its energy transition.

In the grand symphony of human progress, we find ourselves at a pivotal moment—a turning point where the harmonies of innovation and sustainability converge.

Green hydrogen, often referred to as "the fuel of the future," may have one of its primary roles in Brazil.

The Lightyear 0 EV already has the ability to go a whole month without needing to be recharged.

The possibility of generating electricity from ambient radiation fields, which scientists have recently proven, has the potential to fundamentally change…