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Your Job: Help us shape the energy transition! As part of your doctoral studies, you will support the development of innovative stack designs, operating strategies and measurement methods for power
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stack designs, operating strategies and measurement methods for power-to-X systems using high-temperature electrolysis (SOEC). The developed methods will serve to optimise the operation of SOCs
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. MINDnet aims at addressing the challenge through a holistic optimization - from individual computing devices to the overall architecture, including a focus on applications, and training methods - across
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co-optimization and hardware-aware modeling Quantify performance and benchmark results against state-of-the-art architectures Support tape-out and testing of prototype circuits using Altium Designer
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: Developing and applying simulation and optimization models to analyze energy flows, operational strategies and design decisions in a multi-energy system (power, gas, heat) Investigating different community
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Your Job: Conduct the assembly, verification, and calibration of a novel optical instrument in our Cleanroom-5 laboratory at the University of Wuppertal Work with a variety of calibration units
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Identify suitable application task in the field of geolocation and optimize network and learning rules accordingly Design, set up, and operate experimental systems for circuit-level measurements and data
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the inductive heating of heterogeneous catalysts as an integral advantage. Your focus will be on the investigation, development, and optimization of this new process in a continuously operated reaction
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promising lean alloy system for additive manufacturing, as the mechanical properties can be tailored through phase composition, distribution and morphology by tuning process parameters. The work is carried
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on model surfaces In situ and operando (surface) X-ray scattering studies of catalyst/polymer interfaces Design, optimization, and testing/benchmarking of reactors for in situ and operando studies