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- IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava
- Institute of Physics of the Czech Academy of Sciences
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related to modelling of the optical response of materials on the atomic scale. The successful candidate (m/f/d) will join a progressive Light and matter theory group at the Institute of Physics (FZU
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related to modelling of the optical response of materials on the atomic scale. The successful candidate (m/f/d) will join a progressive Light and matter theory group at the Institute of Physics (FZU
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: We are seeking a talented and motivated candidate to join a research team headed by Dr. Tomas Barta at Masaryk University, Faculty of Medicine (https://histology.med.muni.cz/bartalab ). Our lab focuses
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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | about 2 months ago
is currently working on multiple topics in AI including image and time series analysis, LLMs, agentic modelling, RAGs, MCPs, AI quality assurance, MLOps. Complementary to research activities we
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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 2 months ago
are extending our team with a new position to drive research in the field of AI/ML. Our lab is currently working on multiple topics in AI including image and time series analysis, LLMs, agentic modelling, RAGs
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AID with advanced fluorescence microscopy and collaborating with theoretical biophysicists to model IFT dynamics. Key responsibilities Develop and optimize the AID2 system in C. elegans to control
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, scanning and transmission electron microscopy, nano/micro-CT, mathematical modelling and many others. All of our projects are based on large network of local and international collaborators. This offers
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The applicant must have: Background either in material specific calculations of strongly correlated materials including electron-lattice coupling or many-body methods for lattice models., e.g., dynamical mean
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The applicant must have: Background either in material specific calculations of strongly correlated materials including electron-lattice coupling or many-body methods for lattice models., e.g., dynamical mean
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the green multicellular alga Draparnaldia as a new model system to study developmental complexity and adaptations to terrestrial habitats in green algae. We now have strong evidence that Draparnaldia could