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developing better models for fragmentation of metals that include a consideration of the structure at the micro-scale, linking this to fragment formation at the macro-level. This will build on work in crystal
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SFI FAST: PhD position in Microstructure/texture evolution during extrusion of scrap-based Aluminium
nucleation (PSN) and grain boundary pinning effects. The work will include extrusion experiments, advanced material characterization (LOM, SEM, EBSD etc.), and use and further development of crystal plasticity
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KB - PDF) Download METATUNE-MSCA-DN – DC13_Advanced control of wavefronts using liquid-crystals-based reconfigurable metasurfaces_Friedrich Schiller University Jena_Germany..pdf English (184.81 KB
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. Cryopreservation at ultra-low temperatures offers the prospect of long-term organ banking, but its application to large tissues and organs is limited by ice crystal formation and the toxicity of existing
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proximity readout. This combination enables sub-100 ps time-of-flight (TOF) precision and millimetre-scale spatial resolution, surpassing the limits of conventional crystal-based scanners. The Xe-LAr offers
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on fatigue damage in metallic materials. We will employ 3-D crystal plasticity models in order to understand the role of compositional changes in fatigue damage. We will correlate these changes with a
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | about 2 months ago
an increase in crystal field strength. This compression raises the energy of the 4T2 level, thereby reducing the spin-orbit coupling between the 2E and 4T2 levels. Consequently, the luminescence kinetics
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on physics-based computational modelling. Key activities include crystal-plasticity-based finite-element (CPFE) simulations, unit-cell and microstructure-resolved models, and the development of modelling
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of proteins while they function. The project requires production and crystallization of protein, performance of time-resolved crystallography experiments at Free electron laser sources, and advanced data
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. The profile lines of LIGHT – LIFE – LIBERTY are the seed crystals for the university's interdisciplinary research profile. This structure reflects the close collaborations within the university and with non