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are seeking a highly motivated postdoctoral researcher to investigate a new link between acoustic waves, spin dynamics, and magnetic resonance relaxation. The project combines fundamental MR physics with
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energy extraction. Geothermal energy is a local and essential source for heating in the energy mix of the future and must be sustainably scaled up. However, seismicity is a major societal concern
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, energy and momentum flows, spin and orbital angular momentum, and optical or acoustic forces and torques. Key project directions include unpolarised or incoherent near-fields and waves in unconventional
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difference wave-equation solvers such as SeisSol or SPECFEM3D. Affinity with the advancement of geothermal energy. TU Delft (Delft University of Technology) Working at TU Delft means contributing to solutions
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Join the M-WAVE team to develop a forward operator for land data assimilation. Job description Challenge: Understanding the climatic drivers of crop failure, monitoring crop growth and implementing
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to turbulence, shock wave boundary layer interactions in the supersonic and hypersonic regimes. The Aerodynamics laboratories are equipped with state of the art wind tunnels with a large low-speed (low-turbulence
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for the study of critical aerodynamic phenomena such as flow separation, transition to turbulence, shock wave boundary layer interactions in the supersonic and hypersonic regimes. The Aerodynamics laboratories
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division "Catalytic Interfaces for Chemical Hydrogen Storage" (IHE-1), led by Prof. Dr. Hans-Georg Steinrück, we investigate mechanisms and processes in (electro)chemical energy storage systems
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of porous materials with applications in permafrost and geothermal energy for resiliency and adaptive infrastructure under changing environmental conditions Collaboration with team members and the supervision
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the areas of phononics, acoustic and elastic metamaterials, mechanical intelligence, and thermoacoustic energy management. The successful Postdoctoral Associate candidate will: Perform research surrounding