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? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Development, optimization, and assessment of shape-sensing techniques
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. Fundamental understanding — Deepen the physical understanding of coupled mechanisms between flexible structures and complex flows, identifying key parameters governing aeroelastic stability, passive shape
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synthesis, and optimization of small-molecule inhibitors targeting the different NADPH oxidase (NOX) isoforms. Activities include hit-to-lead optimization through structure–activity relationship (SAR) studies
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electrochemical, microscopic, and spectroscopic techniques to establish structure-property relationships that support the optimization of the sensor. Where to apply Website https://apps.unive.it/domandeconcorso-en
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characterized from a structural, rheological, thermal, and mechanical perspective, with the aim of identifying optimal processing conditions and the related structure-process-property relationships
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project OPTiMiSE – Optimal Transport and Metric Structures for Evolution Problems, which aims to develop new mathematical methods for the study of evolution problems through optimal transport theory, metric
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well as to investigate protein–ligand interaction properties; performing protein crystallization and crystal optimization using the robotic facility available in the Structural Biology Laboratory; providing samples and
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) will also be developed to describe the thermomechanical behavior of liquid hydrogen and fluid–structure interactions, enabling fast simulations and design optimization Where to apply E-mail dima
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-based complex fluids dissolved in natural bio-based solvents, optimizing processing parameters for electrospinning. Starting from the formulated fluids, fibrous structures will be produced by
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-ARPES studies of the electronic and spin-resolved electronic structure of quantum materials and engineered layered structures, exploiting a photon-energy range complementary to laser ARPES and other