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Field
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post-AM processing of non-weldable Ni-base superalloys and Ti-alloys using recent advances in laser processing and in-situ process control. Position is connected to the competence centre Centre for
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function using the Drosophila embryo as a model system. In the laboratory we extensively use advanced live-cell light microscopy to understand the behaviour of these organelles, as well as many standard
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—exhibit strong responsiveness to environmental stimuli such as solvent composition, temperature, light, or electric fields. In this project, we aim to exploit this responsiveness to design multi-layer
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This position is until 31 March 2027 with the possibility of a 1-year extension. About Us Diamond Light Source is the UK’s national synchrotron; a huge scientific facility designed to produce very
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with matter and pursues applications that emerge from this research. It develops and uses ultrafast and ultra-intense lasers and laser-riven short-pulse light sources in a broad spectral range in
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for telesurgery. The work will contribute to the development and clinical assessment of a next-generation robotic system for transoral laser microsurgery. THE ROLE The selected candidate will join AIRCARE’s
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characterizations: prior experience in 2D electronic device fabrication and transport measurements in dilution refrigerators and optical spectroscopy. * For light matter interaction systems: Prior experience in light
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for nanometric ion implantation based on laser ionization of neutral atoms coupled to a focused ion beam (FIB). The researcher will take part in the design, implementation, and performance characterization
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, rheological properties of gels) and printing conditions (laser power, printing time). Characterization via SEM/EDX, TGA, SEC-MALS, fluorescence microscopy, XRD, and SAXS. - Cytotoxicity studies of HepG2 cells
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with synchrotron radiation sources and development of new experimental techniques for thermal characterization. Personal Competences: High level of English, Ability to lead specific research lines