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The Leibniz-Institut für Kristallzüchtung (IKZ) is a leading research institution in the field of science & technology as well as service & transfer of crystalline materials. Our goal is to enable
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CANCER (F/M/D) Starting on May 1st, 2026 (with flexibility). We have pioneered the development of synthetic tumor immune microenvironments, engineered from artificial cells that mimic immune functions
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Applications Electrospun hydrogel fibers offer unique versatility. Their mechanical and biochemical properties can be precisely tuned through adjustments in polymer chemistry and crosslinking. By creating
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of satellite and ground‑based observations to characterize vertical coupling mechanisms and their temporal variability. The position also contributes to the planning of future satellite missions, with a focus on
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. or comparable) in (bio-)physics, (bio-)chemistry, materials science, mechanical/(bio)chemical engineering or similar fields. Highly motivated and team-oriented Passion for multidisciplinary research and eagerness
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. or comparable) in (bio-)physics, (bio-)chemistry, materials science, mechanical/(bio)chemical engineering or similar fields. Highly motivated and team-oriented Passion for multidisciplinary research and eagerness
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-regulatory mechanisms in cancer cells that lead to metastatic colonization. The project offers an opportunity to focus on cutting-edge research topics, including how the tumor microenvironment (TME) supports
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. Collaborate closely with an experimental enzymology PhD student to validate your models in the lab. This is an excellent opportunity to contribute to the future of enzyme engineering, bioinformatics, and
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reporting and student supervision. Your profile: Ph.D. in Chemistry, Materials Science, Mechanical Engineering, or a related discipline Background in solid-state chemistry or physics Experience in thin film
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organizational levels of the brain – from molecular and cellular processes to complex neuronal networks and behavior. The research group “Behavioral Neuroscience” focuses on decoding the exact mechanisms behind