Why are scientists wiring human neurons to silicon chips?
Because the human brain runs on about 20 watts, experimental bio-computing is being explored as an ultra-low-power alternative to energy‑hungry AI hardware — a signal of desperation to solve AI's electricity problem, not an investable business yet.
How severe is AI's electricity demand?
Very large: a single AI server rack draws roughly 100,000 watts and large data‑center buildings can use ~750,000 watts; industry demand is projected to double and could restrict a large share of data centers without new capacity.
Which companies can legally sell private nuclear output to tech firms?
According to the video, only a handful of firms operate in deregulated markets and can sign these private contracts — named examples are Constellation, Vistra, and Talen.
What investment opportunities and risks does this power squeeze create?
Opportunities: regulated nuclear suppliers, grid and cooling infrastructure, and 'toll-collector' firms that benefit regardless of energy source. Risks: long build times for new capacity, regulatory limits, announcements that are only claims on power, and volatile capacity pricing.