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the framework of the URANUS project. Main activities : Develop and optimize AESEC experiments coupled with electrochemical systems operating in highly corrosive and/or high-temperature environments. Design
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live in. The selected candidate will join the group Physics of Active Matter at the University of Luxembourg: https://efodorphysics.github Your role The project aims to develop novel analytical and
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simulate a refined batch of synthetic data. For each batch, the postdoc will estimate Bayes optimal error, an important guide for realistic goals for deep learning. The first batch of synthetic data will be
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to optimize performances. The postdoc will carry out structural and morphological characterizations (X-ray diffraction, TOF-SIMS, AFM, and microscopy) of the selected superconducting materials. In the second
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der Waals materials, or materials science. A strong interest in experimental research, data analysis, and the physical interpretation of experimental results is expected. Where to apply Website https
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | about 2 months ago
these limitations. By leveraging RL during the post-training phase, foundation T2V models can be explicitly optimized to follow complex conditioning signals, enforce temporal consistency, and align with specific
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dilution refrigerators. • Implement and optimize multiplexed cryogenic control and readout schemes developed within the PEPR PREQUILE program. • Interface cryogenic control electronics with quantum device
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lattices. • Implement and optimize RF reflectometry and dispersive sensing techniques for the measurement of complex admittance and charge susceptibility. • Design, characterize and improve microwave
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total scattering, supported by state-of-the-art instrumentation that provides unique research opportunities. ID15A is specifically optimized for operando and in situ experiments using high-energy X-rays
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identify the optimal foaming process parameters and study the effects of additives such as starch, silica and calcium carbonate on thermal, mechanical and water-related properties. They will also be