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Field
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, microstructure, mechanical properties, and injectability. Conduct biological assessment, including cell viability, phenotype, ECM deposition, and immunomodulatory profiling in vitro. Contribute
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uniaxial creep tests (tension, compression) and comparing the results Characterization of the microstructure–property relationship using optical microscopy, SEM and EBSD Correlation of microstructure and
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microstructural characterisation. You will also work closely with modelling specialists to connect what you observe in the lab to behaviour across multiple length scales, contributing to a powerful design framework
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will be used: NMR, methods for the measurement of fresh mixes’ rheology, characterization techniques for hardened properties (microstructure and mechanical performance) and further techniques useful
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of resolution Setup, programming, and operation of DIW equipment Determination of optimal debinding and sintering steps Characterization of the sintered materials: density, microstructure, defects, shrinkage
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members to ensure all project deliverables are met. Perform materials characterisation and microstructural analysis, including but not limited to: X-ray Fluorescence (XRF) X-ray Diffraction (XRD) Scanning
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simulation software modelling the dynamic behavior of dislocations (DDD) in 3 dimensions, coupled with a spectral solver based on FFT. The procedures must analyze the simulated 3D microstructures to compare
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(tensile, hardness, nanoindentation, metallography) and microstructural characterization techniques (SEM, EBSD, OM) Experience with metallographic specimen preparation Knowledge of mechanical properties
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multimode microstructured fibers Knowledge of multimodal propagation in optical fibers Mastery of second- and third-order optical nonlinear effects in silica fibers Use of high-power laser sources Mastery of
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. Job Requirements: PhD in Chemical Engineering, Chemistry, or related field At least 1 year of relevant postdoctoral experiences Familiarity with polymer functionalization, microstructural