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and outside ESA; initiate and contribute to interdisciplinary projects with other ACT researchers, combining applied mathematics and advanced numerics with areas such as mission analysis, guidance and
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debris mitigation requirements. Formulation of future scenarios incorporating technology roadmaps, such as the ESA Vision 2040, and hypothetical technological breakthroughs. Policy analysis and regulatory
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radiation simulation toolkits such as Geant4 and its application, GRAS (Geant4 Radiation Analysis for Space). ESA is a signatory member of the international Geant4 Collaboration together with CERN and a
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that can inform and enable such concepts, for example in autonomous operations, scientific data analysis or intelligent payloads; benefit from, and contribute to, the technology and engineering expertise
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-engineering activities, as well as the team’s other main research lines (for example AI for guidance, navigation and control, unconventional computing and mission analysis), via the ACT website (https
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return; supporting the concept of open science by making the link between the open source processors, open validation tools, open reference data and the open platform: the Mission Algorithm and Analysis
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with a special focus on the new Earth Explorers and the Sentinel expansion missions. Advancing our understanding of the Earth system: capitalising on the latest advances in EO technology to respond
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scientists and engineers the opportunity to carry out independent research in a variety of disciplines relating to space science, space applications or space technology. ESA Fellowships provide a unique
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through disciplined cross-domain collaboration, combining biological insight with engineering analysis to define credible research pathways and space-relevant outcomes; scout, follow and, when useful
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of novel EO solutions. We offer: a stimulating multinational, interdisciplinary and open work environment; access to high-performance computing infrastructure and unparalleled EO and technology expertise; a