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systems, biomolecular interfaces, and catalytic processes. The project will use molecular dynamics simulations to understand molecular mechanisms of metal-based antimicrobial systems and biomolecular
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20 Mar 2026 Job Information Organisation/Company Roumen Tsanev Institute of Molecular Biology Research Field Juridical sciences » Public law Researcher Profile Other Profession Positions Master
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, United States of America [map ] Subject Areas: Physics / Atomic Physics , Atomic, Molecular, and Optical Physics , atomic-molecular-optical physics , Atomic/Molecular Physics Appl Deadline: 2026/05/01 04:59 AM
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to increase usage by the community. [1] https://doi.org/10.1039/C9SM01877H [2] https://doi.org/10.1063/1.5123683 [3] https://doi.org/10.6028/jres.123.004 key words Molecular simulation; Monte Carlo
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knowledge of molecular biology. Project Background: Oral tissues constantly experience mechanical forces from mastication, orthodontic treatment, and disease. The junctional epithelium forms a critical
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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various
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(experience in high-pressure experiments, X-ray diffraction, or Raman spectroscopy would be an asset) -An interest in atomistic simulation methods (DFT, molecular dynamics, or related approaches) -Skills in
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in Computational Biology. The candidates should be highly motivated and have a Ph.D. in computational biology or any related field, and a good knowledge of molecular biology. The candidate will be part
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. Approaches researched: molecular dynamics, quantum simulations, machine learning/AI, and high-throughput computing. Required: Mgr./MSc. in chemistry, physics, computer science, or a related field If you are
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 5 days ago
looking for a highly motivated Postdoctoral fellow to work on accelerated molecular simulations and AI-driven drug discovery. Research projects in the Miao Lab include development of novel theoretical and