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. The candidate will reduce model uncertainties by producing new large cosmological simulations of the magnetic outputs from galaxies in the ENZO code, which will test realistic implementations of baryonic feedback
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Phenomenology including Physics beyond the Standard Model, Dark Matter, Axions, Higgs and Collider physics, Neutrino physics and astrophysics; Cosmology including Large Scale Structures, Physics of the Early
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/Linux operating systems, with RAID and server systems; should have good scripting/programming skills (R, Python, Bash, Next-Flow, etc.); and should have a good command of English. The candidate should
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) is a plus. The candidate should also have a very good command of English and the capacity of quickly mastering the literature on the topic, autonomously proposing and designing experiments
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of Quantum Chromodynamics in scenarios characterized by multiple energy scales. The expected results will help refine phenomenological models, improve Monte Carlo simulations, and contribute to a better
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coherent framework between hardware, theoretical models, and application protocols, facilitating the validation and benchmarking of quantum protocols. Thanks to the collaboration between universities
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mentor junior researchers. Flexibility and motivation to learn new concepts Very good English (spoken and written) Relocating to Bolzano Desirable: Experience with snow models or SWE estimation from remote
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intelligent robots. Developing adaptive learning and deployment frameworks enabling secure, trustworthy, and robust operation of AI models embedded in CPS. Conducting empirical and experimental studies at scale