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materials, we seek a Ph.D. STUDENT for high performance lithium-ion battery electrodes (F/M/D). Desired starting date: July 1st , 2025 (or sooner), salary level E13 TV-L 60%, contract limited to three years
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carried out in the business unit Next Generation Computing at Fraunhofer IPMS in Dresden. The examination takes place via affiliation with a German university of applied sciences and is governed by
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satellites for communication with laser beams, in pump light sources, and, more recently, in quantum communication and sensor applications. The development of lasers combines photonics, high-frequency
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wafer cleanroom tool, focusing on alloy performance metrics. Analysis of thin films: Analyze the metal alloy thin films to extract composition (XPS), morphology (XRD, SEM), and resistivity (4pp), ensuring
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• LA-3Q-ICP mass spectrometer • a LIDAR scanner and camera system of a hydrological experimental flume • Maintenance and operation of the measuring computers for these large devices • Support for
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, we seek a highly motivated researcher with a proven track record in parallel programming models for CPS, high-level compilers, system and computer architecture and automatic code optimization
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operation, and system reliability. As part of this initiative, 15 early-stage doctoral candidates (DCs) will be trained through a comprehensive, interdisciplinary program spanning material science, device
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to physical mechanisms of grain growth. Key responsibilities include: Implementing and optimizing segmentation pipelines based on MatSAM and other vision foundation models for high-resolution TEM video frames
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languages used: C++ 2014, CUDA, Lua Desirable: - interest in high-performance computing with graphics processors (GPUs) and simulation methods - fluent knowledge of modern C++ and a scripting language
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areas such as astrophysics, data science, machine learning and high-performance computing scientific leadership and project management of a research group (at least 5 research associates), including