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    The Argonne Leadership Computing Facility enables breakthroughs in science and engineering by providing supercomputing resources and expertise to the research community.

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    The ALCF provides users with access to supercomputing resources that are significantly more powerful than systems typically used for open scientific research.

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Exascale Computing for Energy Applications

Research Project Engineering

Min ALCC Graphic

Autonomy for DOE Simulations

Research Project Computer Science

Grosvenor ALCC Graphic

Simulating Large-Scale Long-Lived Neutron Star Remnants from Binary Neutron Star Mergers

Research Project Physics

Gottlieb

Building Digital Twin of a Model Host-Pathogen System for Enhancing Biopreparedness

Research Project Biological Sciences

Cheung ALCC Graphic

DNS of Buoyancy Driven Flows for Developing NN-informed High-fidelity Turbulence Closures

Research Project Engineering

Dutta ALCC Graphic

High-Fidelity Simulations of Helium-Air Mixing in High-Temperature Gas Reactor Cavities

Research Project Energy Technologies

Lee ALCC Graphic

Towards Generative Decision-Making Agents

Events

TPC Seminar Graphic featuring title of event with the date.

Highly Scalable Ab Initio Simulations of N-Doped Porous Materials for Carbon Capture

Research Project Chemistry

Gordon ALCC Graphic

Machine Learning Enabled Atomistic Simulation of Iron at Extreme Pressure

Research Project Materials Science

Rudd graphic alcc

High Fidelity Numerical Analysis on Flow and Heat Transfer Behavior in Involute Plate Research Reactor to Support the Conversion Program

Research Project Energy Technologies

Yu ALCC Graphic

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