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Field
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) molecular dynamics simulations; and 3) high-performance computing environments. Prior programming experience is preferred but not required. The postdoctoral scientist will design, perform, and develop new
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) investigate the neoepitope antigenicity in peripheral blood of cancer patients. Detailed knowledge of applied cellular and molecular biology and immunobiology, biochemistry and cloning would be highly
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simulations to identify key mechanistic drivers of viral persistence and immune response, and use SciML to automatically select ODE/PDE models that include these mechanisms. The postdoc will develop
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the position. Experience in basic cell and molecular biology techniques in kidney disease research. Preferred Qualifications: The candidate should have: * Background in cell/molecular biology. * Experience with
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the start of the position. Experience in basic cell and molecular biology techniques in kidney disease research. Preferred Qualifications: The candidate should have: ● Background in cell/molecular biology
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related field. Ability to demonstrate professional competence in relevant research activities related to molecular bioengineering and biotechnology. Specialized training and experience in operating
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formation of polyhalogens. The applied methods will include first principles methods like DFT, both for finite and periodic systems, ab initio molecular dynamics simulations and calculations of various
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the start of the position. Experience in basic cell and molecular biology techniques in kidney disease research. Preferred Qualifications: The candidate should have: ● Background in cell/molecular biology
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(broadly defined), molecular dynamics simulations, sampling techniques, machine learning, or quantum computing are big pluses. The candidate should have good communication skills, both oral and written, and
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-antigens. The successful candidate will employ a broad suite of immunological and molecular tools—such as flow cytometry, cell-culture, single-cell RNA sequencing, data analysis and in vivo models