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Field
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cell (iPSC)-derived organoid, assembloid, and organ-on-a-chip systems, applying them to address complex biological questions in disease modeling. We work closely with POEM-associated groups across
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of Europe’s biggest research centers and help us to shape change! Are you eager to pursue a four-year doctoral project that bridges scientific disciplines? Are you excited by complex societal challenges
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organismal systems across diverse biological contexts. Using a blend of cutting-edge experimental and computational approaches, we strive to decode and model complex biological processes—from single-cell
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tackle the complex challenges of our time. What you will do Development and optimization of integrated RF circuitry for Radar Transceivers for implementation into 2.5/3D heterointegrated systems Design of
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to unravel the complexities of disease at the systems level – from molecules and cells to organs and entire organisms. Through strong academic, clinical, and industry partnerships, as well as global networks
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levels of the brain – from molecular and cellular processes to complex neuronal networks and behavior. The LIN is a foundation under public law and committed to a comprehensive policy of Equal
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, Heidelberg and Mannheim, our scientists collaborate across disciplines to unravel the complexities of disease at the systems level – from molecules and cells to organs and entire organisms. Through strong
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, Heidelberg and Mannheim, our scientists collaborate across disciplines to unravel the complexities of disease at the systems level – from molecules and cells to organs and entire organisms. Through strong
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intelligence, automation of processing chains and the creation and management of databases • Ability to analyze complex problems, develop innovative solutions and understand the requirements of research projects
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of Europe’s biggest research centers and help us to shape change! Are you motivated to pursue a four-year doctoral project that requires a diverse set of skills? Are you excited by complex challenges