MAX - MAterials design at the eXascale (GA 101093374) is a Centre of excellence for HPC applications funded in the joint EuroHPC-Horizon Europe call. It develops and uses its lighthouse (quantum simulation) codes1 to enhance the understanding, predicting, and discovering of the properties and performance of materials, to address the HPC-ecosystem challenges, to leverage the opportunities arising from future exascale and post-exascale architectures, and to offer powerful paths to discovery and innovation serving both scientific and industrial applications. In this endeavour, MaX will collaborate with the complementary projects and the dedicated Coordination and Support Action (CSA) CASTIEL 2 (Grant No 101102047) by developing the following activities: [...]

D7.1 Collaboration plan with definition of common objectives and activities including milestones

Luisa Neri;Nicola Spallanzani;Andrea Ferretti
2023

Abstract

MAX - MAterials design at the eXascale (GA 101093374) is a Centre of excellence for HPC applications funded in the joint EuroHPC-Horizon Europe call. It develops and uses its lighthouse (quantum simulation) codes1 to enhance the understanding, predicting, and discovering of the properties and performance of materials, to address the HPC-ecosystem challenges, to leverage the opportunities arising from future exascale and post-exascale architectures, and to offer powerful paths to discovery and innovation serving both scientific and industrial applications. In this endeavour, MaX will collaborate with the complementary projects and the dedicated Coordination and Support Action (CSA) CASTIEL 2 (Grant No 101102047) by developing the following activities: [...]
2023
Istituto Nanoscienze - NANO - Sede Secondaria Modena
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MaX
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/516084
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