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critical metal. The PhD student will explore the geochemical behaviour of lithium in the Earth's crust as a function of variables such as composition, temperature, pressure and oxygen fugacity. The candidate
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of the project is to further develop mass spectrometry-based techniques to sequence and identify circulating antibodies. Our lab introduced innovative methods to enrich antibodies of interest (e.g. anti-viral
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-of-the-art methods and infrastructure Develop strong skills in data analysis and critical thinking Grow into an independent scientist while expanding your knowledge through your own research Contribute to a
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to sequence and identify circulating antibodies. Our lab external link introduced innovative methods to enrich antibodies of interest (e.g. anti-viral antibodies) from individual serum samples. You will further
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the development of new and improved drugs that can effectively treat patients that suffer from the consequences of osteoarthritis. This project builds upon our existing methods, complemented by the methods, tools
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and target trial emulation frameworks to design and conduct studies that compare alternative analytic strategies; apply and validate methods using real-world data sources; investigate approaches
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interested in answering fundamental sociological questions using state-of-the-art quantitative methods. Furthermore, you possess: A Master's degree in sociology or related field, including (but not limited
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approach to create ecosystem-specific, mass-produceable structures ready for large-scale application. Specifically, the team will test a new framework that combines methods from ecology, industrial design
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profiling methods for C. elegans and further optimize them to apply to the early embryo. With this approach, you will generate a genome-wide overview of translational regulation during development. In
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. You will build on our recently developed single-cell ribosome profiling methods for C. elegans and further optimize them to apply to the early embryo. With this approach, you will generate a genome-wide