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to uncover the cellular and molecular mechanisms driving disease development and progression. A key objective of our work is to develop advanced computational tools to dissect the role of alternative splicing
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the Department of Computer Science. Our expectations The postdoctoral position is intended for the development of original empirical, methodological, and/or theoretical work related to the responsible use of large
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author) in the field of computational biophysics (molecular dynamics simulations and/or quantum chemistry). Any experience in development and application of AI/ML methods in tandem with modeling and
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encourage qualified candidates from all backgrounds to join our community. The together and with passion, we research, teach, develop and create solutions targeting social need and shaping a safe and
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. The successful candidate will contribute to the fundamental understanding of how metabolic adaptation of UPEC affects its virulence properties and to the development of new, state-of-the-art tools
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understanding and learning from each other in their co-evolution. We propose building the metaverse idea by combining our physical and virtual realities towards a multi-reality. The programme focuses
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data, omics technologies, as well as novel computational approaches to uncover the cellular and molecular mechanisms driving disease development and progression. A key objective of our work is to develop
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affects its virulence properties and to the development of new, state-of-the-art tools for microbiological research and antibacterial drug discovery. The work mostly comprises of using various
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data, omics technologies, as well as novel computational approaches to uncover the cellular and molecular mechanisms driving disease development and progression. A key objective of our work is to develop
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genetic diversity across space and/or large-scale community-level patterns using sequence data and bioinformatic tools. The postdoctoral researcher will develop pipelines to mine and combine data from