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(LU), Sweden. Work duties The postdoctoral research project will primarily focus on numerical modelling of the heliosphere over the Holocene period and assessing the influence on galactic cosmic ray
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numerical simulation of models for magnetised fluids. About us This position sits right between two research groups at Chalmers: the Plasma Theory group at the Department of Physics and the Geometry and
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research project will primarily focus on numerical modelling of the heliosphere over the Holocene period and assessing the influence on galactic cosmic ray transport to Earth. More specifically this will
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physicist in the area of plasma physics and numerical simulation of models for magnetised fluids. About us This position sits right between two research groups at Chalmers: the Plasma Theory group
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of software and numerical simulations of turbulent flow in complex geometries. The project will entail work with the direct numerical simulation codes Neko and PyFR. Qualifications Requirements A doctoral
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to the development of methodologies for modelling, predicting, and validating dynamic interactions through numerical simulations and field measurements. This project is funded by The Swedish Transport Administration
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ocean environments, ensure safe and sustainable operations. Our activities are centered on numerical modelling (e.g. CFD, FEA, FSI, optimization, machine learning), but also include experiments and real
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extensive interests in population genetics and human evolution, providing numerous opportunities for collaboration with postdocs and PhD students working on related projects. The program is also part of
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numerical simulations of: Steady one-dimensional laminar flames with detailed chemistry. Unsteady three-dimensional RANS simulations of turbulent combustion. Conduct optical experiments on hydrogen-air
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numerical models and signal processing methods to detect and understand seismic events directly from communication signals in optical fibers — paving the way for a new class of communication-based seismic