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. 33:169). Our lab applies high resolution live imaging techniques combined with biophysical approaches, genetics, gene discovery and computational tools. The successful applicant will lead a research
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screening. • Data analysis using X-ray crystallography, neutron crystallography, and X-ray spectroscopy approaches. • Applying computational skills to support and collaborate on AI and classical machine
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] Subject Areas: Physics / Hard Condensed Matter Theory , Machine Learning , Material Science , Physics , Quantum Information Science , Soft Condensed Matter Theory , theoretical condensed matter physics
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support the mission of the university through their work. Qualifications: Ph.D. in Engineering, Computational Biology, Biophysics, Chemistry, Molecular Biology, Genetics or related field Laboratory
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by the interdisciplinary Biophysical Sciences Institute fostering a close collaboration between the Department of Chemistry and the Department of Bioscience and access to state-of-the-art equipment
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 months ago
enables neuronal computations at some of the fastest speeds in the central nervous system to enable the ability to identify and interpret sound information received by the ears. Regarding our gene therapy
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 1 day ago
The position requires knowledge and training in computational biophysics/chemistry and drug design. The researcher will conduct research to forward the developments of biomolecular modeling and computer-aided
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Postdoctoral Affairs. The FY25 minimum is $76,383. The Stanford Natural Capital Project seeks candidates to support a research program aimed at the implementation and scaling of natural capital approaches within
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courses with a focus on Bioinformatics topics. Qualifications PhD degree in Computer Science, Engineering, Statistics, Physics, Biology, Chemistry, Biochemistry, Biophysics, Bioinformatics, or any related
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to screen for effective drug therapies to combat these and other CaV 2.1 channelopathies. In addition, the successful candidate will be given opportunity to develop an independent research program