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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Gorlitz, Sachsen | Germany | 4 days ago
employment. Starting date: 01.03.2026 Job description:PhD Student (f/m/d) in Quantum Algorithms for Fluid and Environmental Flow Modelling With cutting-edge research in the fields of ENERGY, HEALTH and MATTER
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fluid mechanics Apply for this job See advertisement About the position One or two position as a PhD Research Fellow in Mechanics: Viscous flow coupled with elastic deformations linking flow control and
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inputs Reconstitution on a fluid lipid membrane to dissect the molecular mechanisms governing these interactions Potential translation into a new material with controlled function Preferred (but not
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on background and expertise, the successful candidates will contribute to some or all of the following activities: Study the structure and dynamics of wind turbine and wind farm flows under controlled conditions
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15 Jan 2026 Job Information Organisation/Company Institute of Fluid Flow Machinery Polish Academy of Science Department Institute of Fluid Flow Machinery Research Field Engineering » Mechanical
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Gorlitz, Sachsen | Germany | 4 days ago
Job description:Postdoc (f/m/d) in Quantum Algorithms for Fluid and Environmental Flow Modelling With cutting-edge research in the fields of ENERGY, HEALTH and MATTER, around 1,500 employees from
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a strong foundation in fluid dynamics and understanding of fluid (air and water) flow is important. Appointee should also have experience with design of experiments, carrying out experiments and
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synchronised turbulent flows with or without rotation, leading to three papers publishing in Journal of Fluid Mechanics, one of the leading journals in the field. In this project, the candidate will extend our
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will work towards the specific challenge of understanding the formation of bandgaps in swept wing transitional fluid flows and using them to suppress wave-like boundary layer instabilities, thus delaying
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to capture experimentally due to the small scales and opacity of the matrix. Consequently, computational fluid dynamics (CFD) is the best approach for improving these burners. This PhD aims to investigate NH3