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programs of the Leiden Institute of Chemistry, which include Bachelor programs in Life Science & Technology and Molecular Science & Technology (both conducted jointly with the Technical University Delft), as
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and Development hub . You are expected to contribute to the teaching programs of the Leiden Institute of Chemistry, which include Bachelor programs in Life Science & Technology and Molecular Science
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at the crossroad between Quantum Computing and Automated Reasoning. Reasoning engines, like SAT solvers and model counters can be used as oracles in computationally demanding tasks such as quantum circuit
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Reasoning. Reasoning engines, like SAT solvers and model counters can be used as oracles in computationally demanding tasks such as quantum circuit compilation. Moreover, quantum algorithms have yet to be
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our team you will develop state of the art methods in structure based drug discovery. You will apply these approaches in real drug discovery projects, aimed at the identification of novel chemical
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component of the disease, involving both innate immunity (e.g. macrophages, mast cells) as well as adaptive immunity (T- and B cells). Using state-of-the-art technology such as single-cell RNA sequencing and
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with the Natural Computing Group of LIACS at Leiden University and closely collaborate with hydrogen technology companies and other universities in the Netherlands. Key responsibilities Conduct original
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for other types of interaction and collaboration within the project, for example with colleagues from the Department of Geoscience & Remote Sensing at Delft University of Technology (TU Delft), and the
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like engineering design, to provide an example. Subsequently, the project will focus on the development of robust and automatically customizable algorithms. This research is motivated by an undiscussed
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interaction, specifically concentrating on bacterial interactions, preferably experience with plant and bacteria cultivation microbiome analysis molecular microbiology (genetic engineering of bacteria