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control of turbulent thermal boundary layers. 1-Context Turbulent flows dictate the performance characteristics of numerous industrial equipment and environmental applications. One important consequence
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-signal backscatter simulator representative of Martian aerosols. • Integrate the QMZ interferometer and ensure mechanical and thermal stability. 3. Performance characterisation • Measure Doppler
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equivalent (SWE), liquid water content (LWC), rainfall, air and soil temperatures, water saturation, but also radiative fluxes (LWR, SWR) and the degreeday indicator, which reflects the thermal energy
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from fossil fuels. However, many industrial and transportation applications still rely on combustion due to their high energy density and thermal process requirements. Electrofuels (e-fuels), produced
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project, aims to understand and improve non-thermal plasma-assisted catalysis for ammonia synthesis, and to position this process in relation to the HB process in terms of key performance indicators
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site, the Institut Pprime is recruiting a Researcher as part of the INFERENCE project funded by the Agence Nationale de la Reche (ANR) to work on the Modeling and control of turbulent thermal boundary
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active material at the voxel level– except for certain composite hydrogels and materials with a high coefficient of thermal expansion – which demands specific deposition orientation for optimal performance
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& Perception, Materials Mechanics and Processes”: The aim is to develop knowledge about the physics and perception of buildings and their environment, particularly in the fields of acoustics, light, thermal
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hydrogen tanks, the alloy powders must be shaped into pellets to ensure good thermal conductivity and mechanical strength, enabling fast reaction kinetics. These facts were recently demonstrated in
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and their applications in academia and industry, both regionally and nationally. For more information about IS2M, please visit the website: https://www.is2m.uha.fr/ . The Mulhouse Institute of Materials