1,160 structures "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" Postdoctoral research jobs
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Description Magneto-transport study of topological insulators up to 70 T: toward Quantum Anomalous Hall effect in topological hetero-structures The main property of topological materials is the existence
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imaging data. Building on recent critiques of overfitted prediction models, the project will implement a structured, multi-tiered analytical framework, comparing classical regression techniques with modern
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CORE A*/A conference paper. Ensuring the safety and longevity of nuclear reactors requires structural materials that can maintain integrity under extreme thermal, mechanical, and irradiation environments
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the dissolution of peptide powder formulations using in-situ UV spectroscopy. The candidate should have previous experience collecting, structuring, and analysing spectroscopic data using multivariate analysis
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(based for instance on classical and/or ab initio molecular dynamics, combined with ONIOM-type QM/MM approaches) to gain deeper insight into the structure of the HFIP solvent, its coordination properties
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system housing the two arms of the PET-SCAN system - Develop a simulation tool to optimize the prototype structure - Develop software tools for data acquisition and processing This work is being carried
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for the study of (i) coherent quantum dynamics in open systems and/or (ii) strongly correlated electronic structure in quantum materials. Applicants may also propose other compelling projects in quantum science
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at the Department of Chemical and Geological Sciences for the Scientific-Disciplinary Group 04/GEOS-02 – Paleontology, Stratigraphic and Sedimentary Geology, Structural Geology and Tectonics (SSD GEOS-02/C), funded
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. Applicants should possess a Ph.D. degree in chromatin biology, epigenetics, structural biology, cell biology, or a related field, and demonstrate exceptional experimental, writing, and communication abilities
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quantum phenomena and quantum matter in various nanoscale systems, including quantum wires, nanotubes, two-dimensional van der Waals structures, topological insulators and superconductors, strongly