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of configurable power and thermal models, as well as standardized interfaces to facilitate interoperability between chiplets from different vendors 2- determining the optimal level of detail for models to balance
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | 2 months ago
analysis of mechanisms, mechatronic design, and robot architecture optimization. This PhD is part of a collaborative research project with the Gepetto team at LAAS-CNRS (Toulouse). The PhD candidate will
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heat transfer processes Use of advanced numerical methods (CFD, LBM, hybrid models) Utilization of high-performance computing (HPC, GPU) Analysis and validation of numerical results Optimization
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Institute of Chemistry of Clermont-Ferrand (UMR 6296 CNRS) | Aubiere, Auvergne | France | 3 months ago
and technical support services available at the ICCF. Potential research themes include, but are not limited to: - Discovery, engineering, and optimization of novel enzymes for organic synthesis and
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photocatalytic process and the study of the reaction mechanism. # Photoredox catalysis • You optimize the catalytic conditions • You study the extent of the reaction • You carry out reactions
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have unpublished results showing that linear combinations and operations on the ansatz can also be included. This will allow us to perform the ground state search and the dynamics without resorting
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their optimization. For instance, we are currently unable to thermally characterize ITO micro-heaters for photonic applications in order to extract the parameters required for accurate thermal modeling. In
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the supervision of Dr. Olivier Cunrath, the candidate will work on an ambitious research project focused on studying intestinal bacteria and their ability to produce siderophores, key molecules involved in iron
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: • establish and optimize a targeted CRISPR screen of LCCL-domain protein genes ; • generate and analyse genetically modified Cryptosporidium lines ; • develop robust phenotyping assays to identify candidate
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. This thesis aims to model, optimize, and experimentally validate such an optical ultrasound sensor based on resonant metasurfaces. The work will focus on three main areas: 1. Multi-physics Modeling: Development