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Minimum Education and Experience: Ph.D. Degree in Mechanical Engineering or Energy Systems Engineering (or similar degree) or equivalent experience Experience performing and leading university research
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for transport of land-derived materials to the ocean floor in avalanche-like events called turbidity currents. Turbidity currents transport enormous amounts of sediment and Particulate Organic Carbon (POC) and
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to the deep ocean. These canyons are the conduits for transport of land-derived materials to the ocean floor in avalanche-like events called turbidity currents. Turbidity currents transport enormous amounts
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, physics, physical geography, geosciences, or a closely related field. We are looking for a motivated and curious researcher who has: • A strong background in soil or sediment mechanics, environmental
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this challenge by characterizing soil protein composition and investigating the mechanisms that control nitrogen turnover. The doctoral candidate will primarily work in the laboratory, analysing natural soils from
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» Nuclear engineering Engineering » Control engineering Physics » Neutron physics Engineering » Mechanical engineering Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application
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field) and ground-based (radio) data - Use of various software codes: (i) radio emission simulation code, (ii) solar wind propagation code. - Development of software (preferably in Python) for data
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– Germany (www.walther-group.com ) Max Planck Graduate Center between MPI for Polymer Research and JGU Key words: Artificial Cells, Synthetic Cells, Chemo-Mechanical Feedback, pH Feedback Systems, pH Waves
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loading. The project combines computational mechanics, nonlinear finite element analysis and soil–structure interaction to address critical challenges in civil protection and societal resilience. Are you
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and future mechanisms in the evolution of the Earth's climate and external environment, using observations and modeling exercises. The PhD thesis is funded by the French-Brazilian (ANR-FAPESP) AMACLIM