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evolution in Miscanthus hybrids, and to investigate how regulatory, epigenetic, and structural mechanisms contribute to the balance or dominance among subgenomes. Miscanthus is a notable bioenergy crop
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particular, the role of solid-fluid interfaces in enhancing proton transport remains poorly understood. The project embarks on multidisciplinary collaboration between the Laboratory for Waste Management LES
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elements. Erik Schlangen is an expert in construction materials, with particular expertise in the fracture mechanics of concrete and self-healing materials. Together, this team offers a rare combination of
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environment with strong computational mechanics, geotechnical and rock mechanics groups. It gives a possibility to conduct advanced research on the response of civil infrastructure subjected to blast and impact
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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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across copper–silicon interfaces. You will work with characterization methods including SEM, EBSD, XRD, thermal conductivity analysis, and thermo-mechanical testing. The project also includes
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demonstration ships in the early 2030s. Within the SAINT project, you will work in Work package 5. Controlling a nuclear reactor on a ship presents a fundamentally different challenge from controlling a land
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the molecular mechanisms governing host–pathogen interactions. The successful candidate will lead innovative research utilizing advanced cellular and molecular biology approaches, sophisticated two
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the molecular mechanisms governing host–pathogen interactions. The successful candidate will lead innovative research utilizing advanced cellular and molecular biology approaches, sophisticated two
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the following areas is considered a merit: nuclear fuel, fuel-performance modelling, reactor physics or nuclear engineering, numerical modelling of heat transfer, material behaviour or solid mechanics