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of radiative flux, photon recycling, and optical losses. Its geometry and optical properties therefore play a central role in determining the overall efficiency of the subsystem. Designing such cavities is a
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. The doctoral candidate will work in close collaboration with EDF R&D. SCIENTIFIC CONTEXT: The energy transition requires the design of new energy conversion systems that are more efficient, flexible, and adapted
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. - Choices regarding specific modes of representation (e.g., the voices of characters and the narrator), prosody, and sound design to convey the functions typically provided by layout and graphic cues. - Job
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huge signal-to-noise degradation due to significant path loss and blockage [3], which can partly be compensated using high-gain beamforming. Physical layer waveform design is also an important challenge
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mechanical output. Overall, this work will enable the screening and rational design of optimized photoswitch/polymer combinations4 and will lay the groundwork for future PPA materials design. The candidate
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) combine their expertise to fully develop, that is including sub-systems design and optimization, a versatile reversible sCO2 Brayton cycle targeted to harvest industrial waste heat. In this project, LMFA
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environment at the CNRS Coordination Chemistry Laboratory in Toulouse, France, as part of the “Molecular Design of Transition Metal Catalysts” group. This PhD position is funded by the ANR through the project
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Objectives The PhD candidate will be involved in: Design and synthesis of novel bi- and tridentate CAAC ligands Exploration of coordination chemistry with first-row transition metals (Mn, Fe, Co, Ni). Full
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logistics. In this context, numerical simulation plays a central role for prediction, design, and decision support. In modern applications, models are frequently multi-physics, involve strong couplings across
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resolution using micron-sized lipid particles functionalized with phagocytic ligands and decorated with fluorescent tracers for pH and proteolytic activity. This design will enable innovative real-time