A clear-eyed look at how AI is being used in mental health care today, where it genuinely helps, and where the risks are serious enough to demand caution.
A practical explainer on synthetic biology — how engineers treat DNA as a programming substrate, why AI is accelerating the field, and what it means for medicine, manufacturing, and agriculture.
A grounded look at how longevity technology works, from biomarkers and senolytics to AI-driven drug discovery, and what it means for healthcare, insurance, and biotech builders.
A practical look at how machine learning is changing weather and climate forecasting, where it beats traditional physics-based models, and where it still falls short.
A grounded look at where fusion energy actually stands today, what separates a lab result from a power plant, and why the commercial timeline keeps slipping.
A practical explainer on small modular reactors (SMRs) — what they are, how they differ from conventional nuclear plants, and why data center operators are betting on them.
A clear look at why grid-scale energy storage is the hardest unsolved piece of the renewable transition, and what technologies are competing to fix it.
A practical look at green software engineering — how code decisions affect energy use, and what developers and engineering teams can actually do about it.
A grounded look at how carbon capture technology actually works, where it's deployed today, and why it remains one of the most contested tools in climate policy.
A practical look at vertical farming technology — how stacked, indoor growing systems work, where they make economic sense, and where the model still struggles.
A look at how desalination, leak detection, water reuse, and digital monitoring are being combined to address growing water scarcity and aging infrastructure.
A clear breakdown of the space economy — the industries, business models, and infrastructure turning orbit into a place where companies actually make money.