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molecular biology techniques, 2D and 3D cell culture models (hydrogels), imaging techniques (TEM, SEM, confocal), protein analysis (immunohistochemistry/immunofluorescence), and handling of rodents. Specific
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and functional investigation of the oxytocin system in the context of social behavior and neurodevelopment, and 3) creating 3D atlases for developing mouse brains. We utilize high-resolution 3D imaging
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Scientific Machine Learning. The successful candidate will develop and deploy state-of-the-art SciML algorithms in high-performance computational physics codes. We accept applications from all candidates with
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), and 3) developing digital 3D atlases and various neuroinformatics tools. We utilize high-resolution 3D imaging tools (e.g., light sheet fluorescent microscopy) and computational approaches to examine
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astrophysics. The successful candidate will lead the implementation of new features in the AthenaK code, in collaboration with Dr. David Radice (Penn State) and Dr. Jim Stone (IAS), and they will participate