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; plasmas encountered in planetary magnetospheres; the solar wind and artificially generated charges and fields on spacecraft; micro-meteoroids and non trackable debris; planetary and lunar dust; and
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 21 minutes ago
geophysical modeling. A wide range of research is possible, from the analysis of existing lunar datasets, to the development of new modeling approaches, and to simulations of possible future measurements
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 20 days ago
permanently shadowed regions (PSRs) of the Moon, and act as key drivers of chemical complexity on Ocean Worlds and small bodies. To interpret remote-sensing observations from current telescopes and spacecraft
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 21 days ago
. Description: Magnetometry plays a crucial role in a wide range of remote sensing applications. On Earth, it aids in GPS-denied navigation, geological surveying, and submarine detection. In space, it contributes
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offers B.S., M.S. and Ph.D. in Mechanical Engineering degrees. UNT has a highly diverse campus with a wide range of languages spoken in addition to English. We welcome candidates who have experience with
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Engineering (SSE). SSE is dedicated to the broad range of end-to-end spacecraft engineering, with focuses on distributed and miniaturised space systems. Job requirements We look forward to dynamic candidates
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premise, primarily within the Section of Space Systems Engineering (SSE). SSE is dedicated to the broad range of end-to-end spacecraft engineering, with focuses on distributed and miniaturised space systems
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AI-based decision-making, learning approaches, and predictive capabilities to enable spacecraft to react proactively to events while reducing reliance on ground intervention. A key focus will be
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high-impact space applications. In recent years, the ACT has carried out a broad range of projects at the interface between artificial intelligence and space engineering, introducing event transition
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to work on next-generation electric propulsion concepts for very-low-Earth orbit (vLEO) satellites. The goal of this project is to improve the science and technology of electric propulsion concepts