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study their structures and dynamics using multi-scale simulations, which include all-atom molecular dynamics (MD) simulations, coarse-grained MD simulations, quantum mechanics/molecular mechanics (QM/MM
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of 40 hrs/week, with some nights & weekends as research requires. Job Summary The Markey Cancer Center is recruiting for a Post Doctoral Scholar. This position will investigate the molecular mechanisms
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performing atomistic simulations with Density Functional Theory and Molecular Dynamics. Data analysis and coarse graining in order to provide parametrisations for upper scale models (Kinetic Monte Carlo and
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). - Application of molecular and cellular biology techniques (PCR, Western blot, ELISA, immunofluorescence, and immunohistochemistry) in tumour samples and other tissues. - Characterization of the immune profile in
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, metabolic enzymes). Experience with developing protein binders (e.g. nanobodies). Experience with molecular dynamics simulations. Strong quantitative assay development/analysis skills; experience bridging
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structures for single photon emitters, a key component of the future quantum technologies that will revolutionize society. He/she will develop nanostructures by molecular beam epitaxy (MBE) and will perform
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and molecular mechanisms governing intracellular staphylococcal infection. In addition to experimental work, the position includes participation in the supervision of doctoral and master’s students, as
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the implementation of a research project funded by the National Science Centre (NCN) under the OPUS 29 call, project no. 2025/57/B/NZ3/0184, entitled “Molecular pathways involved in nuclear membrane stress adaptation
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molecular dynamics simulations across multiple resolutions, most likely from the atomistic to the coarse grained level, using a variety of force fields and computational methods. Run large-scale simulations
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, while preserving ultimate precision in single-molecule localization and access to key photophysical parameters (fluorescence lifetime, brightness, molecular dynamics). This approach paves the way toward