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of the (computational) mechanics of solids and the finite element method and/or spectral solvers Practical experience in at least one programming language (preferably Python) and experience with the use of Unix/Linux
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theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to apply new methods. For an initial
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unravel the atomic-scale mechanisms that underlie the high strength and ductility of Mg-rare earth (RE) based alloys. This will be achieved through a combination of advanced microstructural characterization
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sensors systems, which involves the characterisation and optimisation of near- and mid-infrared lasers, paired with work on the optical and mechanical packaging of these sources. Furthermore, DC7 will work
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The primary task of the project is to unravel the atomic-scale mechanisms that underlie the high strength and ductility of Mg-rare earth (RE) based alloys. This will be achieved through a combination of
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interactions through chemical and physical methods, we tailor the structural and mechanical properties of bio-based materials to advance the potential of biopolymers in various applications. Project description
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The Leibniz Institute for Solid State and Materials Research Dresden e. V. (IFW Dresden) conducts modern materials research on a scientific basis for the development of new and sustainable materials
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Description Your profile We are seeking an evolutionary and/or developmental biologist with a solid empirical background and methodological skillset and a keen interest in addressing fundamental
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Solid State Physics. Your tasks: The research aims to develop new theoretical frameworks to explore dynamical phenomena in magnetic quantum materials driven out of equilibrium. The key mechanisms
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and require the collaboration between different research groups. Applicants can identify up to three projects of interest. Project 1: With six feet on the ground – How insects sense vibration