
Quantum Protein Folding
Automatski is transforming protein folding from a statistical guesswork problem into a physics-driven computation. By applying quantum computing to model folding from first principles—with no
Automatski is transforming protein folding from a statistical guesswork problem into a physics-driven computation. By applying quantum computing to model folding from first principles—with no
Automatski delivers exponential computational advantage in first-principles physics simulations using both classical and quantum methodologies—powering breakthroughs across fundamental and applied sciences.
Delivers near real-time solutions for complex differential equations with exponential speedup—without relying on traditional HPC. Solves large-scale physical and scientific models with unprecedented efficiency.
Automatski enhances large-scale economic simulation with quantum-augmented ODE/PDE solvers, enabling real-time policy modeling and predictive economic insights across complex, interdependent systems.
CCS is critical to reducing global CO2 emissions, especially from hard-to-abate sectors like cement, steel, and power generation. Automatski brings a new era of precision
At Automatski, we have discovered and implemented the fundamental algorithm behind human intelligence. Our invention of a complete, non-realtime AGI system unlocks the true nature
The foundational assumptions of computational complexity have been challenged and overturned. Automatski presents both the theoretical and implemented proof of P = NP, backed by
Hydrogen is not an energy source—it is an energy carrier. While 1 kg of hydrogen delivers nearly 60 miles of range (39.4 kWh), its energy
Automatski has redefined the boundaries of climate science with production-grade ODE/PDE solvers capable of solving fully coupled, nonlinear systems in real time. Unlike traditional climate