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in shaping the change! We offer ideal conditions for you to complete your doctoral degree: Excellent environment to perform high-quality research and to implement own ideas in the development process
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simulation studies (LTspice and Cadence Spectre) perform algorithm-circuit co-design, quantifying performance and benchmarking with competing approaches support printed circuit board design and tape-out
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using MPI and high-performance computing resources is advantageous, but not necessary Your application should include a CV, motivation letter, copies of university degrees and grades, and contact
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for an ideal balance between stability, performance and price Building a test station for evaluation of electrochemical performance in short stack Physical, spectroscopic, and electrochemical characterization
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of the regions of interest determined in X-ray imaging for later analysis using high-resolution transmission electron microscopy and atom probe tomography Performing transmission electron microscopy experiments
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Your Job: Join the Safe.SIB research project to develop new battery cell chemistries or introduce new functionalities into an existing battery technology to achieve safe, ultra-high performant
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holography, combined with ultra-fast laser excitation and ultra-short electron pulses, to monitor carrier dynamics. The goal is to identify and map regions of high quantum efficiency as well as recombination
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scientific exchange at the national and international level Your Profile: You have successfully completed a master’s degree in natural or (industrial) engineering, computer science, or a related field You
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the perspective of energy infrastructure. Using the existing energy system models of ICE-2, you will develop scenarios to analyze the effects on the German energy system and its robust design in a European context
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high-resolution electron microscopes. Perform and advance image analysis to determine high-resolution cryo-EM structures of ice-embedded test specimens and in situ cellular samples. Employ advanced