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a Postdoctoral Researcher for experiments in swarming dynamics of living swimmers A Postdoctoral Researcher position is available in the Living, Fluid, & Soft Matter group of Prof. Matilda Backholm
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National Aeronautics and Space Administration (NASA) | Fields Landing, California | United States | about 1 hour ago
fluid dynamics code and the NEQAIR radiative solver. Comparisons of DPLR/NEQAIR results to EAST measurements reveal several discrepancies which may be addressed by improving model fidelity and input
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of Geosciences performing computationally intensive geodynamic models of the plate boundary system in the western United States. The Postdoctoral Associate will investigate the dynamics of the southwest
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of Geosciences performing computationally intensive geodynamic models of the plate boundary system in the western United States. The Postdoctoral Associate will investigate the dynamics of the southwest
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in the fluid mechanics laboratory for experimental fluid dynamics. SITE is inviting applications for fully-funded postdoctoral research associate positions. SITE is highly interdisciplinary and aims
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independently, who is motivated to help and be part of a dynamic research environment, and who has a positive, supportive and creative outlook. We expect you to have good communication and personal interaction
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multidisciplinary team comprised of fellow postdoctoral appointees, experimentalists, and staff scientists, with computational fluid dynamics (CFD) and artificial intelligence/machine learning (AI/ML) expertise, with
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laboratory in the Department of Radiology at Stony Brook University. The successful candidate will lead efforts to quantify multi-scale neurofluid dynamics, including blood flow and cerebrospinal fluid
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researcher should have expertise in materials/mechanical/electrical engineering with an excellent understanding of fluid mechanics as well as experience with Arduino/Raspberry Pi programming, 3D printing and
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of molecular reactions occurring at the surface of various materials. In addition, computational fluid dynamics (CFD) simulations combined with microkinetic modeling will be carried out to study the heat