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Field
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THIS VACANCY IS OPEN TO INTERNAL APPLICANTS ONLY About us The Pellegrini Lab is a collaborative research group focused on understanding the molecular and cellular mechanisms of human brain
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dynamics, reactivity and molecular interactions. The tasks can include: Visualization of single nanoparticles during thermal catalysis using time-resolved, atomic-resolution transmission electron microscopy
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leveraging AI, quantum chemistry, and molecular dynamics simulations. The candidate will work in close collaboration with experimental groups providing validation/testing of novel mixed conducting materials
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, high-throughput simulations, molecular dynamics, and materials chemistry. Strong Python programming skills are required, and prior experience with developing open-source software or databases will be
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cost of MD simulations by several orders of magnitude. Notable examples of our work in this area include Boltzmann Generators [1 ,2 ], Surrogate-model Assisted Molecular Dynamics [3 ], and Implicit
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Polymers using a combination of quantum and force field-based simulations that will be further integrated into a force field-based Molecular Dynamics (MD) approaches to assess the permeability and
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laboratory. The candidate will benefit from the expertise in numerical simulation and bioinformatics available at the L2C and the IBMM. The IBMM will produce the initial glycoproteins for calculations using
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of novel organic mixed ionic/electronic conductors leveraging AI, quantum chemistry, and molecular dynamics simulations. The candidate will work in close collaboration with experimental groups providing
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The Department of Molecular Biology, Umeå University, Sweden, seeks a postdoctoral researcher to pursue a project in single cell transcriptomics of microorganisms. The employment is full-time for
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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