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and systems based on III-V and CMOS process technologies for signal amplification, conditioning, sampling, and wireless data transfer for sensing systems that operate in harsh environmental conditions
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: Manipulation of ultrashort laser pulses from an industrial ytterbium laser for high-order harmonic generation and photoemission electron microscopy of nanostructured samples. The project's goals, based on a
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group which is responsible for the development of the Ambient Pressure X-ray Photoelectron Spectroscopy Program at MAX IV. The beamlines provide a wide range of sample environments for in situ and
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. Experience developing methods for integrating acoustofluidic sorted samples with MS-based proteomic analysis. Experience in bioanalytical methods for protein analysis Practical experience in biological sample
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to allergen-specific immunotherapy. The research group conducts experimental and translational research in close collaboration with specialists at Skåne University Hospital. The team collects samples