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, LHC , Machine Learning , Neutrino , Neutrino physics and Astrophysics , Phenomenology , Quantum Field Theory , Theoretical Particle Physics , theory , Lattice QCD Appl Deadline: 2025/12/01 11:59PM
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Max Planck Institute for Nuclear Physics, Heidelberg | Heidelberg, Baden W rttemberg | Germany | 30 days ago
strong links to theory groups at the institute and astrophysical interpretation and modelling work may also be included. PhD in Physics or Electronic Engineering. Knowledge of relevant technologies and/or
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reduce those uncertainties. Qualifications include an earned PhD in physics, astrophysics, nuclear physics, nuclear astrophysics or stellar astrophysics with a focus on the modelling of astrophysical
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astrophysical free boundaries. Responsibilities include running high-resolution GPU-accelerated simulations on exascale computing systems, developing and applying geometric measure theory tools to quantify
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-Intensive Engineering and Science (part of the new Data Science and AI center), and at the National Radio Astronomy Observatory. Required qualifications are: PhD in Astronomy, Astrophysics, Physics, or a
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variability of accreting compact sources. Help supervise and mentor students working on related topics. Teach physics, if desired. Minimum Qualifications: PhD (or imminent defense) in Astrophysics, Physics
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variability of accreting compact sources. Help supervise and mentor students working on related topics. Teach physics, if desired. Minimum Qualifications: PhD (or imminent defense) in Astrophysics, Physics
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and relevant to research agendas. Additional duties may be assigned. Minimum Qualifications Must have completed all the requirements for a PhD. in Astronomy, Physics, Astrophysics, or related science at
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] Subject Area: Astronomy / Theoretical Physics / Astrophysics, Cosmology, Gravitational waves, Particle physics (theoretical and experimental) Physics / Astroparticle Physics, Astrophysics (astro-ph
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simulations to experiments in subatomic physics. The Plasma Theory group within the Division conducts research on acceleration and radiation generation in magnetic fusion, laser-produced and astrophysical