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Research (NCCR) “AntiResist", we develop new approaches to overcome the global antibiotic resistance crisis. To understand why antibiotics sometimes fail to treat bacterial infections, it is critical
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. Combining expertise in nanomaterials, colloid and analytical science, cellular biology and bioengineering, we investigate how nanoparticle structure and composition influence biological function. A particular
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funded project at the intersection of experimental geochemistry, cryosphere science, and planetary surface processes. The position is fully funded for 4 years, with an expected start date of 4 January 2027
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-generation strategy for making radiotherapy more selective, effective, and clinically accessible for difficult-to-treat pediatric tumors.
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Building a quantum computer that can solve real-world problems will require the integration of many highly coherent qubits. Hole-spin qubits in planar germanium quantum wells are among the most
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research exploring the processes controlling tropospheric composition (gases and particles) and their intersection with global change. Research makes extensive use of global modeling tools (GEOS-Chem and
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research topics in the earth sciences and biology. The student will belong to the Doctoral Program in Earth Surface Processes and Paleobiosphere (https://earth-processes.cuso.ch ), which provides many
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, flavour physics, effective field theories, theories beyond the standard model and computer algebra. More details on current research activities can be found on our homepage: https://www.physik.uzh.ch/en
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childhood through adolescence. Data collection will primarily take place in schools, where children and adolescent research participants will complete computer-based learning tasks designed to capture
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optics, supported by an excellent academic record, Experience with data analysis and familiarity with software tools for automated measurement, data acquisition, or data processing, The ability to work