Sort by
Refine Your Search
-
Do you want to contribute to groundbreaking research in the intersection of battery systems and data-driven optimization? This is an exciting opportunity for a postdoctoral position at the Division
-
treatment and hot isostatic cracking) to minimize/avoid cracking and optimize microstructure and properties. You will be working with hands-on manufacturing, microstructure characterization using advanced
-
of these algorithms on advanced hardware for optimizing the execution. You may also help in supervising PhD students and/or master's students working on related topics. Qualifications PhD in Computer Science, Computer
-
treatment and hot isostatic cracking) to minimize/avoid cracking and optimize microstructure and properties. You will be working with hands-on manufacturing, microstructure characterization using advanced
-
characterization of quantum processors Development and optimization of nano-fabrication processes for large-scale devices Development of optimal control techniches to achieve fast and high-fidelity qubits operations
-
disturbances (e.g., generator outages, transmission line failures, or system separations) Developing methodologies for optimally allocating these services based on the characteristics, availability, and
-
around 200 dedicated staff, including 65 PhD students . We are a joint department between Chalmers University of Technology and the University of Gothenburg, combining the best of two academic worlds in
-
optimization of sensors for infection diagnostics You will work within an interdisciplinary group at Chalmers, and will regularly interact with experts from Mölnlycke Health Care Supervise master’s and/or PhD
-
-level engineering relevance. We welcome applicants with a PhD in Aerospace Engineering, Mechanical Engineering, Energy Engineering, Applied Physics, or a closely related field. The candidate should have a
-
photodetectors, including thin-film processing and structure–property optimization. In close collaboration with device researchers, you will iteratively improve OPD performance and stability by linking material