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Argonne Leadership Computing Facility

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    Leadership Computing Resources

    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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    The ALCF is accelerating scientific discoveries in many disciplines, ranging from chemistry and engineering to physics and materials science.

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    The ALCF is committed to providing training and outreach opportunities that prepare researchers to efficiently use its leadership computing systems, while also cultivating a diverse and skilled HPC workforce for the future.

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    Accelerating Science

    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 Support Center assists users with support requests related to their ALCF projects.

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Autotuning Scientific Applications for Energy Efficiency at Large Scales

Events

CS Seminar Graphic

Understanding and Predicting Network Performance: It's Hard

Events

CS Seminar

Risk-Stratified Screening for Colorectal Cancer Using Genetic and Environmental Risk Factors: A Cost-Effectiveness Analysis Based on Real-World Data

Publications Clinical Gastroenterology and Hepatology

TIES 2.0: A Dual-Topology Open Source Relative Binding Free Energy Builder with Web Portal

Publications Journal of Chemical Information and Modeling

Development and Performance of a HemeLB GPU Code for Human-Scale Blood Flow Simulation

Publications Computer Physics Communications

Electronic Excitation Response of DNA to High-Energy Proton Radiation in Water

Publications Physical Review Letters

Electrochemical Oxidation of Methane to Methanol on Electrodeposited Transition Metal Oxides

Publications Journal of the American Chemical Society

Facilitating Electronic Structure Calculations on GPU-based Exascale Platforms

Events

ECP

Hydrogen Evolution on Electrode-Supported Ptn Clusters: Ensemble of Hydride States Governs the Size Dependent Reactivity

Publications Angewandte Chemie

Hydrogen-Induced Restructuring of a Cu(100) Electrode in Electroreduction Conditions

Publications Journal of the American Chemical Society

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