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characterize truck loads, load effects, and fatigue demand to support data-driven reliability and rating. 20% 3. Perform advanced FE analyses using commercial packages (e.g., ABAQUS, LS-DYNA) to evaluate
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computational modeling (e.g., Abaqus, ANSYS, FEBio, COMSOL, or similar). * Programming and data analysis skills (MATLAB, Python, etc.). * Strong communication skills and ability to work in a team-oriented
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tissue mechanics. • Experience with benchtop mechanical testing (e.g., pressure-flow loops, valve testers). • Proficiency in computational modeling (e.g., Abaqus, ANSYS, FEBio
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. The candidate should also have a good knowledge of simulation on Abaqus Standard; an experience in testing at extreme conditions, high pressure and temperatures is a plus. For any appointment at MCEM, an in-depth
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is preferred. 7. Prior experience in mechanics simulations, experience with Abaqus, COMSOL is preferred. 8. The candidate needs to work well in a team with good communication skills. Interested
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finite element software (Abaqus) via user subroutines and conduct numerical case studies to demonstrate the model capabilities. You will have the opportunity to be involved in undergraduate and graduate
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(Abaqus) via user subroutines and conduct numerical case studies to demonstrate the model capabilities. You will have the opportunity to be involved in undergraduate and graduate supervision and teaching
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aerodynamic, vibration, and endurance testing campaigns. Assist in assembling and calibrating morphing-wing UAV prototypes. Methodology: Design and Simulation: ABAQUS, SolidWorks, ANSYS, or COMSOL for topology
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modelling and optimisation for concrete surfaces. Developing simulation models (e.g. COMSOL, ABAQUS, ANSYS) for acoustic field prediction and performance evaluation. Designing, prototyping, and integrating
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expertise in the analysis and design of concrete structures. Advanced proficiency in Finite Element Modelling (FEM) using tools such as Abaqus, ANSYS, RFEM, SAP2000, MIDAS or equivalent. Solid understanding