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, and failure-mode prediction in distributed charging and energy-management environments as part of the BANNER research project Investigate fault-tolerance and fault-recovery mechanisms for decentralized
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Andrology (CeRA). Here, we investigate the cellular and molecular mechanisms underlying vascular and lymphatic control of gonad development, using advanced imaging, zebrafish models, and organoid systems. Our
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prediction in distributed charging and energy-management environments as part of the BANNER research project Investigate fault-tolerance and fault-recovery mechanisms for decentralized edge AI hardware
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(PhD Position) Mechanically Soft Micro and Macrocomposites for Wearable Devices within the framework of project A2 of the Collaborative Research Centre 1261 (Magnetoelectric Sensors: From Composite
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Max Planck Institute for Heart and Lung Research, Bad Nauheim | Bad Nauheim, Hessen | Germany | 7 days ago
, Justus Liebig University in Gießen, and Goethe University Frankfurt. Participate in an international and multidisciplinary environment that explores the cellular and molecular mechanisms controlling
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Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute • | Jena, Th ringen | Germany | about 3 hours ago
the host. Consequently, we investigate the defence mechanisms the immune system uses against pathogens as well as the strategies employed by microorganisms to overcome these defence mechanisms and the
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board! RESPONSIBILITIES: Opportunity to contribute to ongoing research on mechanical signaling in healthy and diseased heart muscle cells Use of state-of-the-art molecular, biophysical, and imaging
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for highly loaded, neutron-exposed components in nuclear reactors. High-entropy alloys have shown promising mechanical, thermo-mechanical, and corrosion-resistant properties. Their complex chemical composition
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interactions. We are looking for a highly motivated PhD student (m/f/d) to join us as soon as possible. Your tasks – In this project, you will design and study thermoplastic elastomers whose mechanical
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engineered 3D hydrogels, we will experimentally probe the mechanical forces and physical constraints that drive coordinated cell behavior. In parallel, we will develop and apply computational models and