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science (unconventional computation) and close-to-physics computing (magnetic metamaterials) defines the aim and direction of the sought research. The candidate will be part of our multidiscipline Symbiotic computing group
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for postdoctoral positions in theoretical condensed matter physics. Our research focuses on emergent quantum phenomena arising from the interplay of electronic correlations, unconventional superconductivity
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characterisation, and computational modelling to enable structure-driven materials discovery, targeting systems with unconventional atomic arrangements and emergent properties, and is inspired by the recent
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characterisation, and computational modelling to enable structure-driven materials discovery, targeting systems with unconventional atomic arrangements and emergent properties, and is inspired by the recent
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characterisation, and computational modelling to enable structure-driven materials discovery, targeting systems with unconventional atomic arrangements and emergent properties, and is inspired by the recent
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availability of funding, work performance, and progress toward research goals. Purpose The primary objective of this role is to quantify multiphase flow and gas–condensate relative permeability in unconventional
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funded through the EU Research Framework Programme? European Union / Next Generation EU Reference Number 101097684-Excited Is the Job related to staff position within a Research Infrastructure? No Offer
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help write proposals. Required Qualifications Ph.D. in petroleum engineering, geothermal engineering, earth sciences, and related disciplines with experience in geothermal energy or unconventional oil
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phenomena in low-dimensional systems. The materials studied will include superconductors relevant to quantum information science as well as unconventional and candidate topological superconductors and
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pore-scale computational modeling and will develop, test, and deploy pore-scale simulation models for the analysis of flow in porous media in conventional and unconventional formations. These efforts