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development of special phase field and phase field crystal models coupling newly developed approaches with established approaches for simulating e.g. mechanical properties and the flow of fluids implementation
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include: Developing innovative serration and permeable surface designs to further reduce trailing edge noise. Conducting detailed fluid dynamics, aerodynamics, and aeroacoustics investigations to understand
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applied physics other related disciplines. Demonstrated knowledge in at least one of the following areas: porous media flow computational fluid dynamics (CFD) pore-network modelling lattice Boltzmann method
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We are seeking an outstanding candidate for a PhD fellowship in the field of computational fluid and solid mechanics. The fellowship will start on September 1st, 2025, or as soon as possible after
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Physics , Experimental Ultrafast Physics , Field Theory , Fluid Physics , Fundamental Quantum Science , GR-Cosmology (gr-qc) , Gravitational Physics , Gravitational Theory , Gravitational Wave Sources
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based on fluid mechanics, non-equilibrium thermodynamics and statistical mechanics. Further information about PoreLab can be found here: https://porelab.no/ The position reports to Professor Alex Hansen
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(see below) You are expected to acquaint yourself with the research areas at DTU Physics as listed below and formulate a statement about which of these fields have your interest. You are also welcome
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letter) Curriculum vitae Grade transcripts and BSc/MSc diploma (in English) including official description of grading scale List of publications You may apply prior to obtaining your master's degree but
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, and energy sciences, this project aims to advance the knowledge of how Earth's shallow fluid systems change over time and space. Being able to closely observe and monitor these processes is pivotal in
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offer you an opportunity to join DTU’s Department of Chemical and Biochemical Engineering as a PhD scholar starting in 2025. The available PhD positions will be within the areas listed below, but we also