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, plasma polymer growth mechanisms, and the physicochemical properties of the resulting coatings, and for transferring the optimized conditions from model surfaces to magnetic nanoparticles. The main
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and optimize radiofrequency (RF) power coupling, PMI target conditions, and overall device performance in preparation for early device operations. Integrate boundary plasma simulations with impurity
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electron-scale turbulence. Quantify the effects of electron beta and collisionality on core and pedestal transport, including comparisons between lithium-conditioned and non-lithium plasma conditions
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suffered multiple snakebite envenomations. Following selection, the B cells and the plasma antibodies will be subjected to long-read RNA sequencing and mass spectrometry, respectively, for subsequent
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project on multifunctional self-sensing probe technologies for experiments on quantum materials under cryogenic and vacuum conditions. Main duties and responsibilities The successful candidate will work
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postdoctoral position lies at the interface of fluid mechanics, phase-change physics, and industrial application. It is part of ARCNL’s Source Department and the EUV Plasma Processes group. We investigate
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. The Postdoctoral Associate (Postdoc) will lead the development of growth processes on a newly installed plasma-enhanced CVD (PECVD) diamond reactor in the Cornell NanoScale Science and Technology Facility (CNF
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properties. The Postdoctoral Associate (Postdoc) will lead the development of growth processes on a newly installed plasma-enhanced CVD (PECVD) diamond reactor in the Cornell NanoScale Science and Technology
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 20 days ago
–surface interactions) influence planetary magnetic fields, atmospheres, and surface/plasma environments and how these conditions may affect mission operations, system performance, and astronaut safety
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institutional approval) in complex plasma physics, starting in October 2026. The successful candidate will join Dr. Surabhi Jaiswal’s research group focusing on dust-plasma interaction under a high magnetic field