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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 23 days ago
models entails challenges beyond standard decision-making frameworks: calibration, inference, and optimization must operate over high-dimensional, continuous, and structured variable spaces. In
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simulations and large-scale DFT calculations at finite temperature using the Special Displacement Method (SDM) and its anharmonic extension (ASDM). Model polymorphous structures beyond the standard monomorphous
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We offer PostDoc positions in the area of Quantum Software Verification, Compilation and Optimization. Interested applicants with strong analytical skills and a desire to work on algorithmic and
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synthetic organic chemistry, including reaction design, optimization, purification, and structural characterization. Strong command of spectroscopic methods (H/C NMR, mass spectrometry, chromatography, etc
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and optimize the extraction processes. Investigate structure-property relationships to correlate the extraction process with the functional performance of nanofibers in various applications
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to collaborate with doctoral students and interest in scientific supervision of doctoral students Very good written and spoken English Independent, creative, and structured scientific approach with motivation
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in porous media. The researcher will contribute to the implementation of new physics (such as transport, reactions, and thermo-mechanical couplings), computational performance optimizations
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an excellent publication record. Solid research experience in one or more of the following topics is expected: Graph neural networks Optimization algorithms Predicting structured output Self-supervised learning
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on concrete materials and structures. • Experience with concrete mixing and laboratory testing. • Experience with statistical analysis of experimental data and optimization techniques. Application
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extensive electromagnetic modeling to optimize the waveguide structures for minimal loss, efficient confinement, and effective mode matching with external optical components. Particular attention will be