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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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    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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A New Perspective on the Initial Hydrogenation of TiFe0.9M0.1 (M = V, Cr, Fe, Co, Ni) Alloys Gained from Surface Oxide Analyses and Nucleation Energetics

Publications Applied Surface Science

Heteroatom-Doped Graphenes as Actively Interacting 2D Encapsulation Media for Mg-Based Hydrogen Storage

Publications ACS Applied Materials and Interfaces

Solomon Bekele

Person

Correlation Consistent Effective Core Potentials for Late 3D Transition Metals Adapted for Plane Wave Calculations

Publications The Journal of Chemical Physics

2023 ECP Community BOF Days

Events

ECP

Simulating Hydrodynamics in Cosmology with CRK-HACC

Publications The Astrophysical Journal

Cosmo-Paleontology: Statistics of Fossil Groups in a Gravity-Only Simulation

Publications The Open Journal of Astrophysics

Why Are We Still Using 3D Masses for Cluster Cosmology?

Publications Monthly Notices of the Royal Astronomical Society

The Mira-Titan Universe – IV. High Precision Power Spectrum Emulation

Publications Monthly Notices of the Royal Astronomical Society

NSTX-U Theory, Modeling and Analysis Results

Publications Nuclear Fusion

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