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related orthopaedic trauma. In particular, contemporary cell / molecular biology in vitro approaches as well as clinically relevant small and large animal models of orthopaedic trauma are utilized
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multiscale and multiphysics modeling for thermomechanical effects on high performance heat spreaders based on materials such as diamond thin films. Collaborate with experimental groups on characterization
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devices, and edge computing platforms. Deploy machine learning models to enhance process control and system responsiveness. Collaborate with industry partners to identify research challenges, co-develop
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remote sensing. The research may range from theoretical to applied and involve the use of measurement and/or modeling approaches. This position will also summarize findings and publish research results in
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statistical models aimed at substantiating the explanatory account the project will offer. Co-authoring papers for submission to top academic journals based on the research and contributing to the writing of a
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-based models (ABM) of social behavior; Familiarity with LLM-based research methods. Modes of Work Positions that are eligible for hybrid or mobile/remote work mode are at the discretion of the hiring
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that translate evidence-based interventions for preventing overdose, data modeling, national surveys, epidemiological research, and mechanisms of pain, addiction, or overdose. Compensation and Benefits
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. Proficiency in programming languages such as Python, C++, and MATLAB for spacecraft modeling and simulation. Experience with simulation environments and tools used in space research (e.g., GMAT, STK, Gazebo
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H100s). Ideal candidates will have a strong interest and proven experience in designing, understanding, or engineering large AI models or their applications. Current PLI projects involve work with
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biology/ecology; Turfgrass science/Turf ecosystem modeling; Urban agriculture, green roofs, and native plants; and Viticulture. Required Job Qualifications Completed PhD or equivalent degree from