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Max-Planck-Institut für Kohlenforschung, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 6 days ago
combines experiments, quantum chemistry, and spectroscopy to study reaction mechanisms and to discover how solvation and catalyst design affect the rate and selectivity. Current projects focus on developing
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strategies and characterization of machining outcomes, and round-robin tests validate models and assess process robustness under real manufacturing conditions. Key objectives are the development of a software
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The transition to a climate-neutral energy system requires safe, sustainable, and cost-effective technologies for long-duration electricity storage. Rechargeable iron–air batteries are attracting
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. The focus of this PhD position is the development, characterization and experimental evaluation of advanced sensing hardware. Signal processing and Artificial Intelligence are applied as enabling technologies
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You will work in a highly interdisciplinary research environment, with access to world-class nanofabrication and characterization infrastructure. For deeper insights, please have a look at our
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based on separating the mechanical function of the substrate from the transport of electronic charge carriers, thereby overcoming corrosion as the primary degradation mechanism. To realize this concept
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-electricity conversion in silicon-based photovoltaic devices. Using off-axis electron holography in a transmission electron microscope combined with ultrafast laser excitation and pulsed electron beams, the
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, characterized not only by aggressive tumor cells but also by a complex tumor microenvironment comprising cancer-associated fibroblasts (CAFs) and tumor-associated macrophages (TAMs). Current liquid biopsy
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multiple technological platforms - photonics, electronics, biological neurons. Responsibilities and tasks This PhD project aims to (1) optimize the design of hybrid electrical–optical computing architectures
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physics, chemistry, biology and soft matter. We perform systematic characterization using complementary techniques, including cutting-edge TEM methods such as electron ptychography and holography, enabling