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Field
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, specifically designed for radiolysis studies, will be used to determine the nature and energy distribution of radiolytic species generated in water (hydrated electrons, photons, H• radicals, H₂O₂, etc.) under
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ecosystem. Focusing on key enabling technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide
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nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems of the 21st century. To that end, we educate
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technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems
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inspiring scientific ecosystem. Focusing on key enabling technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our
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7 Tesla MRI Two-photon and confocal microscopy State-of-the-art electrophysiology Brain-machine interfaces Mechanical and electronic prototyping workshops Access to advanced microfabrication
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programme Yes Joint degree / double degree programme No Description/content Photonics is one of the main research fields at the Friedrich Schiller University Jena, and about 300 doctoral candidates
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nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems of the 21st century. To that end, we educate
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. The graduate school covers data challenges from application fields such as structural biology, particle physics, photon science, materials science and ultrafast X-ray science. What these data challenges have in
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website: https://glykys.lab.uiowa.edu Position Responsibilities Record, plot, analyze and interpret data independently using electrophysiological and imaging techniques, including two-photon and whole-brain