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carry out theoretical research at the intersection of combinatorics, group theory, and geometry. We will explore abstract notions of rigidity and motion in non-classical geometries using combinatorial
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motion in non-classical geometries using combinatorial, algebraic, and group-theoretic methods, inspired by the mathematical theory of articulated systems and constraint geometry. Possible tools include
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in a sample Optimize and validate the performance of a MIP microscope setup in terms of sensitivity, spatial resolution and quantification through systematic experimentation and mathematical modelling
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of evolutionary optimization, complex systems theory, and control theory. Study why immune systems differ dramatically across species and why some lineages have lost adaptive immunity. Collaborate across