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and Jülich. Initially, the work will primarily take place in Aachen Scientific Exchange: The opportunity to attend national and international conferences Work-life balance: Optimal conditions for
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monopoles in patterned artificial spin ice structures, examining their behavior across varying temperatures and applied magnetic fields in three dimensions. The research will primarily be carried out using
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sensing, and advanced wavefront sensors. Design, align, calibrate, and optimize optical experimental setups and measurement systems. Analyze experimental data and translate scientific findings
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on understanding and engineering materials at the atomic scale. Using state-of-the-art electron microscopy and spectroscopy, the institute develops new experimental methods to reveal how nanoscale structures
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like to actively shape the structural change in the Rhenish mining area together with us? With us you have the chance to join the Institute for a sustainable Hydrogen Economy (IHE) with your ideas right
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Technology Development and System Design: Conducting process development and optimization, as well as their integration, for the manufacture of PICs across various production sites Project Acquisition and
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for autonomous optimization and design of materials, structures and processes Multimodal scientific AI – integrating language, images, sensor data and simulations Alignment for scientific AI – scalable oversight
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management • Team player with the ability to work independently Your project: • Develop and optimize submerged lung model • Exposure of cells to extracts • Evaluate bio-assays as readouts related to cellular
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of sequencing data Build and optimize pipelines connecting NGS outputs to AI models Support cfDNA, CNV, fragmentomics, and other biomarker-related analyses Assist in data preparation, feature extraction, and
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atomic structure, chemical composition of the surface on electrochemical parameters both spectroscopic and microscopic techniques will be employed. The DC will synthesize and characterize metal-free thin