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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 6 days ago
. Studying literature Scanning rose flowers at different growth stages Implementing and testing neural shape models Writing research reports Where to apply Website https://jobs.inria.fr/public/classic/en
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forming a moist microbial rhizosphere habitat. Your work will build on the process-based soil-rhizosphere-plant model, developed at the Agrosphere Institute, which integrates a 3D functional-structural
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Laboratory (University of Nantes) and the NIMBE Laboratory (CEA Saclay). This molecular chemistry project aims to develop pericyclic reactions suitable for real-time NMR monitoring, enabling the detection
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endanger the performance and lifetime of these reactors. We will develop a predictive multi-scale modeling framework to understand and mitigate this damage. At the atomic scale, molecular dynamics
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The aim is to develop machine-learning models that describe how
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advanced laboratory techniques (e.g., flow cytometry, cell culture and 3D models, molecular analyses) Analyze and interpret experimental data; contribute to data presentation and publications Ensure timely
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molecular biology, evolution and biodiversity, precision medicine and diagnostics, epidemiology and biology of infection. For more information, please see https://www.scilifelab.se/data-driven/ddls-research
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 9 days ago
: 265566 Vacancy ID: PDS003971 Position Summary/Description: The Miao Lab in the Computational Medicine Program and Department of Pharmacology at the University of North Carolina – Chapel Hill (https
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-EM Single Particle Datasets Using 3D-to-2D Flexible Fitting based on Molecular Dynamics Simulation. J Mol Biol, 2023. 435(9): p. 167951.https://hal.science/hal-03929029 [3] Valimehr, S., et al
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analyses, isotope-based approaches (CSIA), and molecular biology tools to investigate: • contaminant fluxes and bioavailable fractions in urban aquatic systems, • transformation processes and interactions