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Field
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-motivated candidate with a 1st or high 2:1 degree in Engineering or Physical Sciences or a related science discipline. Prior experience in thin-film deposition, microscopy, spectroscopy, electronics
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) The subject of the PhD Thesis will be studying polarons in real space by noncontact atomic force microscopy (nc-AFM), focusing on their thermally-, field- and light-induced motion. Further, the growth
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-based imaging technique Dark-Field X-ray Microscopy. Installed at the European Synchrotron Radiation Facility in France we utilize it to visualize the evolution of internal structures in metals during
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structural analysis of enzymes involved in insect terpenoid biosynthesis Genetic tools for circadian clock disruption in non-neural brain tissues studied by luminescence microscopy Integrative Transcriptomic
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analytical electron microscopy in-house, together with a fractography analysis of the post-mortem specimens. Furthermore, steel irradiations will be performed using the high-energy proton beam generated by
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approaches including beta/gamma irradiation (Dalton Cumbria Facility, DCF) and advanced electron/X-ray microscopy (e.g., Diamond synchrotron https://www.diamond.ac.uk ). These studies will be combined with
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scattering, neutron scattering, light scattering and fluorescence microscopy to unravel the properties of such droplets. The concrete activities during the project will involve protein handling, general
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | 3 months ago
hydrogenation, smart nanomaterials, thermally-programmed methods, electron microscopy (TEM, SEM), in situ/operando methods Description of the research project and the PhD thesis Supervisor: prof. dr hab. Leszek
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microscopy, expression of recombinant lectins, cell biology. Host Institution: Department of Chemistry ‘Ugo Schiff’, University of Florence (UNIFI), Italy. https://www.chim.unifi.it/ Duration: 36 months
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structural stability of RNA, isolated or complexed with different compounds, using microscopy techniques (SEM and TEM) and Circular Dichroism; 3) Characterization of the biological activity of RNA through