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to: Learning about aircraft systems engineering and systems analysis to support integrated design and performance assessment. Participating in aircraft design trade studies with a focus on propulsion–airframe
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control and statistical analysis Learn about optimizing liquid handler to automate biomolecule assembly on electrodes Participate in development of techniques for high throughput optimization of sensing
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dissection, electrophysiology, plethysmography, fluorometry, and spectrophotometry Gaining experience in aspects of experimental design, troubleshooting, and data analysis Where will I be located? Edgewood
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trends and composition analysis, refractive index determination, and morphology for applications such as environmental monitoring, nuclear non-proliferation, and improving predictive modeling tools (e.g
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? As part of this learning experience, you and your mentor will be involved in two to four research projects: one involving the efficacy of a hypoxia inducible factor prolyl hydroxylase inhibitor
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trends and composition analysis, refractive index determination, and morphology for applications such as environmental monitoring, nuclear non-proliferation, and improving predictive modeling tools (e.g
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coagulation factor proteins to investigate the mechanisms of coagulation and drug action. The experiments will include enzymatic, clotting, antigen and thrombin generation assays. Mouse models may be used
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machine servers to host computationally-intensive research efforts Developing skills in computer coding to contribute to simulations and the analysis of results Where will I be located? Dayton, Ohio What is
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monitoring methodologies Developing surgical EEG-lead implantation skills Conducting data management, statistical analysis, and principles of scientific study design Gaining knowledge of animal anatomy and
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cycles 3. Developing quantitative uncertainty, through the analysis ensemble spread 4. Use of reanalysis in applied science sectors (e.g., Energy, Agriculture) The research will require analysis of large