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structural information to complement structural biology techniques. - Design, perform and interpret mass photometry, native MS, HDX-MS and cross-linking MS on a series of mulitprotein complexes
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, effluent composition, hydrodynamic conditions) on treatment performance and gas production; • Qualitatively and quantitatively characterize the gases produced during electrolysis; • Establish correlations
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transport, microscopy, and optical spectroscopy, to establish links between electronic structure and emerging physical properties. Design and perform optical and electronic characterization of two-dimensional
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the encoding and propagation of sound intensity information. The postdoctoral fellow will perform viral vector injections into the cochlea and the brain, image the labeled neurons, and generate a three
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performed implementing a high-purity, single-pulse shock tube with multiple diagnostics. Shock tubes are experimental devices in which temperature and pressure are raised to well-defined conditions by means
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the ATLAS experiment. Prospective studies will also be performed to assess the expected sensitivity of these measurements at the High-Luminosity LHC (HL-LHC). The PhD project will be carried out in close
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rates. The thesis will focus on: - The operation of the ion trap and laser-cooling bench, and the implementation of traditional Rabi and Ramsey scheme to demonstrate clock operation; - The implementation
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foundation for next-generation flat-optics devices, rivaling the performance of traditional bulk components. Nonlocal metasurfaces represent a cutting-edge class of optical devices that engineer optical
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advocates for the regulated use of performance-enhancing drugs under medical supervision and explicitly proposes a counter-model to the international anti-doping regime and the Olympic system. This private
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experimental protocols for the operation and characterization of large quantum dot arrays in silicon-based semiconductor devices. • Tune and control electron filling in one-dimensional and bilinear quantum dot