Sort by
Refine Your Search
-
and evaluation of innovative data- and machine learning-based systems to integrate more renewable energy into our energy systems and make energy use more efficient. We develop new optimization methods
-
Network (DN) project: AlignAI. The AlignAI Doctoral Network aims to train doctoral candidates in the interdisciplinary Large Language Model (LLM) research field. Location: Technical University of Munich
-
-projects in our research network with a large industrial partner Initiation/creation of project proposals for interdisciplinary projects and funding opportunities Organization of the Biomanufacturing Lab
-
multi-species data effectively. This will allow us to unravel complex regulatory instructions and their evolution, build predictive models, and design genes with intended regulation. Your role As the
-
Management Technologies are focusing on the design and evaluation of innovative data- and machine learning-based systems to integrate more renewable energy into our energy systems and make energy use more
-
technology constraints Placement & Routing for technology-independent layout generation Clocking and data synchronization Layout validation and verification Technology mapping and optimization To learn more
-
sensing, geophysics, physics, or related areas; other areas are welcome if added experience in topics of the project can be demonstrated For benchmarking: Experience in big data management, preferably Earth
-
geoinformation from big Earth observation data acquired by current and future Earth observation missions. It is involved in a large number of third-party projects and a large international network. It is a global
-
coding skills to design highly efficient algorithms. A focus in fabrication, and ideally interest (or even first lab experiences) in microfluidics is obviously a big advantage. Join our Team While we
-
offers many opportunities for specialization such as: Researching data structures to efficiently handle and manipulate circuits Developing mapping strategies to satisfy interaction constraints