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fidelity, pore structure, and mechanical integrity to define optimal process parameters for scaffold fabrication. Task 2: Perform computational modelling and simulation studies using ANSYS Fluent to analyse
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of transfection efficiency, gene/protein expression, and osteogenic differentiation. Practical experience with 3D printing or biofabrication of biomaterial scaffolds, including mechanical and structural testing
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mechanical and biological properties. This cutting-edge technology allows for the layer-by-layer construction of biocompatible scaffolds that closely mimic native tissue microarchitecture, crucial
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of Chemistry. This position is intended to begin January 1, 2026. The aim of this project is to develop and apply computational methods for statistical learning on chemical reaction network (CRNs) structures