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intrinsic autofluorescence when illuminated in the UV, providing superior sensitivity to current Raman and infrared spectroscopies. The central objective is to improve detection sensitivity thanks to
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Megagauss magnetic fields by means of quasi-optical conductivity measurements in the GHz range and THz spectroscopy. The successful candidate will contribute to the development of novel GHz and THz
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familiar with nanofabrication/microfabrication techniques, including cleanroom processes or optical microscopy and spectroscopy. Scientific writing and communication skills in English are required
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, heat transport, and nano-optics. Hands-on laboratory experience is required. Experience with nanofabrication/microfabrication and optical characterization techniques (e.g., spectroscopy or microscopy) is
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approach combining cryo-electron microscopy, NMR spectroscopy, and advanced molecular modeling, the research will unravel the molecular architecture and conformational dynamics of pili and their interactions
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optical spectroscopy setup will be built by the PhD student. Briefly, the higher energy pump pulses will allow to generate photo-excited carriers, while less intense probe pulses will detect
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consequence of the gut environmental cues on the EHEC virulence. More information and application: https://positions.stradivarious.eu/jobs/6722806-dc7-impact-of-microenvi… DC11: EHEC type IV pili structure
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quantification of mineral dissolution and deposition reactions. These experiments will employ advanced optical or spectroscopic techniques, such as Raman spectroscopy. The experimental data generated will serve
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electronic and magnetic excitations in matter using resonant and non-resonant inelastic X-ray scattering as well as emission spectroscopy. The main scientific activities comprise the investigation of strongly
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, lipids, peptides, biopolymers, etc.) using separation techniques (HPLC/UPLC, possibly CPC/SFC), mass spectrometry and spectroscopy. Assess the dermocosmetic and nutraceutical potential of the extracts and