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clusters and dielectric nanoparticles from molecular beams to levitated optomechanics. We work on novel tools for quantum sensing, mass spectrometry and biomolecular chemistry. Our team is member of
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clusters and dielectric nanoparticles from molecular beams to levitated optomechanics. We work on novel tools for quantum sensing, mass spectrometry and biomolecular chemistry. Our team is member of
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of completing a dissertation in the field of turnout systems Development of measurement and evaluation methods based on laboratory and in-situ measurements Planning, preparation, and execution of laboratory tests
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electrochemical measurements, elemental analysis Optimize polymer thin-film formation using different techniques Probe signatures of stacked-ring aromaticity and strong interchain interactions via spectroscopic and
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social science methods with philosophical analysis. Current case studies examine steroid hormone use by bodybuilders (PI-led) and DIY gender-affirming care (Postdoc-led). Your personal sphere of influence
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, electrophysiology, and live-cell imaging Apply and further develop methods for high-resolution and super-resolution fluorescence microscopy Analyze in vivo models, particularly using slice electrophysiology, protein
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-efficient thin film electrocatalysts based on earth-abundant elements for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) aimed at anion exchange membrane (AEM) electrolyzers. Thin film
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systems based on superconducting microwave circuits and cryogenic noble-gas crystals. By understanding and controlling microscopic loss mechanisms at the interface between superconductors and cryogenic
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with industrial partners. Our research covers the development of innovative measurement and monitoring methods, including fiber-optic sensing as well as video- and satellite-based technologies, through
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”. This is an excellent opportunity for candidates interested in membrane biophysics, single-molecule methods, and protein–lipid interactions within a collaborative and interdisciplinary research environment