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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 12 days ago
No. 24-11388I - Magneto-elasticity of non-cubic materials in spin-lattice dynamic simulations. Activity description: · conduct scientific investigations in two primary research directions: - development
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letter Current curriculum vitae Copy of PhD diploma A list of publications and conference presentations Signed information on the processing of personal data (https://bsp.adm.uw.edu.pl/wp-content/uploads
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sustainability. We develop functional fiber materials with specific photonic and electronic properties by polymer molecular engineering and fiber structure design. Together with advanced textile technology
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technology. Development of cutting edge foundation models for protein design, small molecule property prediction, or protein function prediction Data generation and curation, including molecular simulation and
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for digital twin: 3D model learning, prediction models from imaging and molecular data, model-based simulation coupling, and uncertainty-aware outputs for lab/clinical validation. Work with 3D datasets, time
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://www.mbnresearch.com ) is internationally recognised as a leading expert in the multiscale theory and simulations of molecular and condensed matter systems exposed to radiation, the development of advanced computational
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differential equation models of bacterial persistence. A particular challenge, both for simulation and for machine learning, lies in the high dimensionality of these equations, which causes grid-based numerical
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Kong, Hong Kong [map ] Subject Areas: Physics / Applied Physics , Atomic Molecular and Optical Physics , Atomic Physics , Atomic, Molecular, and Optical Physics , atomic-molecular-optical physics
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Postdoctoral Research Associate will be responsible for AI-driven materials discovery. The position will collaborate with interdisciplinary teams to develop integrated molecular simulation and machine learning
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research tasks: (i) modeling electric and magnetic excitations in two-dimensional (2D) materials, and (ii) simulation of charge transport phenomena in plasmonic crystals with 2D electron gas layers, with