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Applications Electrospun hydrogel fibers offer unique versatility. Their mechanical and biochemical properties can be precisely tuned through adjustments in polymer chemistry and crosslinking. By creating
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for machine learning models to optimise membrane properties, structure, and fabrication. The fellow will play a key role in the experimental part of the project, including: Preparation and characterisation
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semesters Beginning Winter semester Application deadline Please visit https://www.uni-muenster.de/Baccara/application/index.html . Tuition fees per semester in EUR None Combined Master's degree / PhD
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manufacturing technologies and eager to develop and build experimental setups and combine this with physics-based modelling? Join us as a PhD candidate and contribute to making volumetric 3D printing predictable
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, assessment of the synergistic effects of anticancer drugs on glioma cells cultured on elastic and viscoelastic 2D hydrogels, evaluation of the therapeutic efficacy of anticancer drugs using xenograft models
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Predictive Model” project financed from the funds of Priority 2 of the European Funds for a Modern Economy Program 2021–2027 (FENG) Action 2.2 First Team, with the Intermediate Institution being the Foundation
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) techniques mainly involving MEX, PBF, VPP, metal Atomic diffusion (ADAM), electrospinning, electroforming, rapid tooling and vacuum casting, as well as on polymer processing (injection moulding, compression