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National Aeronautics and Space Administration (NASA) | Fields Landing, California | United States | about 9 hours ago
is reproduced in the NASA Ames Electric Arc Shock Tube (EAST) facility, and is used to test models developed to predict the heating mechanisms. The primary models employed are the DPLR computational
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to investigate the underlying DNA damage response mechanisms in cancers. One area of active research is to investigate mechanisms of sensing and resolving R-loops in cancers to provide molecular insight
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age-related cognitive decline and neurodegenerative diseases, with a special emphasis on Alzheimer's disease. We are committed to investigating the mechanisms of brain aging and developing innovative
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Rutgers offers a comprehensive benefit program to eligible employees. For details, please go to http://uhr.rutgers.edu/benefits/benefits-overview . Posting Summary The laboratories of Profs. Max Häggblom
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expertise in respiratory physiology and pertinent cellular and/or molecular mechanisms. Technical expertise in computer programming languages including R, Phython, and LabView are welcomed. Demonstrated
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Mohadeseh Taheri-Mousavi’s group. The postdoc will develop and conduct advanced machine learning techniques combined with computational research to study the mechanical behavior of welds. Responsibilities
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position for a postdoctoral associate. The focus of the lab is to investigate the mechanisms regulating reproductive function in avian species in health and disease. Research projects include investigating
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Education At the time of hiring, a PhD in Solid state Physics, Theoretical Chemistry, Computational Materials Science, or related fields. Required Experience Strong foundation in Quantum Mechanics and
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Sciences | Chemistry and Biochemistry Administration We are seeking a Post Doctoral Scholar to join the Department of Chemistry and Biochemistry at The Ohio State University studying molecular mechanism
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clinical pulmonologists and immunologists to study the molecular mechanisms that underly airway tissue homeostasis and asthma pathogenesis. In addition, our group aims to develop new computational algorithms