Assoc. Professor - Mechanical Engineering teaches courses in the discipline area of mechanical engineering. Develops and designs curriculum plans to foster student learning, stimulate class discussions, and ensures student engagement. Being an Assoc. Professor - Mechanical Engineering provides tutoring and academic counseling to students, maintains classes related records, and assesses student coursework. Collaborates and supports colleagues regarding research interests and co-curricular activities. Additionally, Assoc. Professor - Mechanical Engineering typically reports to a department head. Requires a PhD or terminal degree appropriate to the field. Has considerable experience and is qualified to teach at undergraduate and graduate levels and conducts research and case studies in field of interest and may publish findings in trade journals or textbooks. (Copyright 2024 Salary.com)
Corvid Technologies is seeking qualified candidates for an internship working with our Structural Mechanics Applications Group. The Structural Mechanics Applications Group supports a variety of government programs investigating dynamic phenomena including hypervelocity penetration, reactive material physics, material characterization, and weapon system evaluation. The group leverages its proprietary solver, Velodyne, which is a predictive multi-physics hydro-structural solver involving shock physics to understand and predict what happens to matter (gas, liquid, or solid) under extreme loading conditions, and involves structural mechanics to analyze the behavior of solid structures when exposed to applied mechanical loads.
Qualifications
Why Corvid:
Founded in 2004, we are a group of over 300 engineers and scientists, about 3/4 with master’ degrees or Ph.D.'s, that provide end-to-end solutions including concept development, design and optimization, prototype build, test and manufacture. We leverage the predictive capability of our high-fidelity computational physics solvers, indigenous massively parallel supercomputer system, prototyping plant, and ballistics and mechanics lab to investigate a variety of high-rate physics phenomena.
The results are complex engineering solutions for a variety of applications; aircraft, ballistic missile defense, cybersecurity, motorsports, armor development, biological systems, and missile and warhead design and development. These results are achieved with optimal design and cost efficiency due to the predictive capability of Corvid’s tools and our in-house, end-to-end integrated approach, which differentiates Corvid from the market.
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