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the University, will provide meaningful support for your teaching and scholarship as elements of your personal and career development. We encourage you to grow professionally, and we support a healthy work-life
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the fatigue life of highway bridges by investigating the role of damping under combined thermal and heavy traffic loading. The project involves: Developing high-fidelity Finite Element (FE) models of highway
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characterization, and/or component validation and verification. Strong background in CAD, finite element analysis, additive manufacturing, integrated computational materials engineering techniques and software
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dimensioning and tolerancing, including drawing standard ASME Y14.5. Extensive experience with SolidWorks or equivalent 3D CAD software. Proficiency in Finite Element Analysis using ANSYS, COMSOL, or equivalent
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phase-field methods within finite element frameworks with advanced experiments in simulated nuclear reactor water environments to predict material lifetime. The project includes materials characterization
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. The work combines material modeling using advanced plasticity theories and nonlocal micromechanics-based fracture models in a finite element framework to predict material degradation and failure. The project
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sizing. Familiarity with practical finite element analysis using ANSYS Workbench or Comsol, and pipe stress analysis programs such as CAESAR-II, CAEPIPE, AUTOPIPE, WINPIPE, ROHR2. Experience creating and
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, natural language processing (NLP) and machine learning Connected and autonomous vehicles Disaster and natural Hazard assessment and management Discrete element method (DEM) and finite element methods (FEM
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of relevant work experience, or equivalent combination of education and work experience. Preferred Qualifications Strong background in Finite Element Analysis. FLSA Exempt Full Time/Part Time Full Time Number
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of academic background and scientific publications (45%); Experience in analysis and simulation and finite element software for the analysis of building components; energy and thermal simulation (30