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assessment of mining waste Duration: 12 months renewable. Position Summary: We are seeking a highly motivated and skilled Postdoctoral Researcher to join an interdisciplinary project focused on 3D
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optimization and aerodynamic modeling. Fabrication: Composite layup, 3D printing (FDM/SLA), and assembly of drone airframes. Testing: Wind tunnel, fatigue, and flight tests for mechanical and aerodynamic
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processes. Experience with CAD/CAM software and 3D printing technologies. Excellent written and verbal communication skills in English. Ability to work both independently and collaboratively within a research
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collaboratively in interdisciplinary teams. Excellent scientific writing and communication skills in English. Expected Outcomes: Perform and validate 3D CFD models that accurately represent the CSTR co
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morphing-wing UAV prototypes. Methodology: Design and Simulation: ABAQUS, SolidWorks, ANSYS, or COMSOL for topology optimization and aerodynamic modeling. Fabrication: Composite layup, 3D printing (FDM/SLA
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to the multidisciplinary character of ACER CoE, the ideal candidate must have as well a multidisciplinary scientific profile: PhD degree in Materials Science, Chemical Processes or another suitable engineering discipline
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of proposals for research funding. Assist to the supervision of Ph.D. students and guide their research work. Candidate Profile Due to the multidisciplinary character of ACER CoE, the ideal candidate must have
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Profile: Due to the multidisciplinary character of ACER CoE, the ideal candidate must have as well a multidisciplinary scientific profile: PhD degree in Materials Science, Chemical Processes or another
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validate 3D CFD models that accurately represent the CSTR co- precipitation environment. Optimize reactor configurations and impeller designs to improve mixing and synthesis efficiency. Identify optimal
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optimization and aerodynamic modeling. Fabrication: Composite layup, 3D printing (FDM/SLA), and assembly of drone airframes. Testing: Wind tunnel, fatigue, and flight tests for mechanical and aerodynamic