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to control elastic wave propagation at gigahertz frequencies. The recruited postdoc will work in close collaboration with other members of the team who will perform the optical and acoustic characterization
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synthesis experiments for the development of new pentafluorosulfanylation reagents. • Optimizing reaction methods to improve yields and selectivity. • Characterizing the obtained products using advanced
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** Deployment and optimization of the PFAS analytical toolbox: targeted analyses (LC-MSMS, GC-MSMS), total oxidizable precursor assay (TOPFAS), and non-target screening (NTS, LC-HRMS Orbitrap). Intercomparison
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optimizing their functional behavior. The goal of this postdoctoral project is to carry out state-of-the-art experimental research on mechanical properties of HEA NPs with the intent of elucidating the link
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of the operating conditions and local environment conditions The proposed activity is part of the TOSCaNA project (Flame Spray Pyrolysis of metal-oxides: TOward Size and morphological Control of flame-synthesized
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additional modification. This phenomenon gives rise to out-of-plane ferroelectric domains. The goal of this postdoctoral position is to optically detect, track, and ultimately control the ferroelectric state
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the hypothesis that the plant (WP1), bacterial community (WP2), soil organomineral association (WP3) continuum can, while meeting agronomic requirements (WP4), be optimized to increase soil carbon sequestration
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accelerators. The main objective of the postdoctoral project is the design, optimization, and implementation of compact focusing optics and beam diagnostics tailored to the specific characteristics of electron
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of MR experiences with controlled experiments and both qualitative and quantitative analyses. The ultimate goal is to determine which forms of MR are best suited to the sensitive context of memorial sites