10 postdoc-in-postdoc-in-automation-and-control-"Multiple" PhD positions at University of Twente
Sort by
Refine Your Search
-
combine multiple techniques, picking those that complement each other. In particular the use of non-destructive techniques is important, avoiding unintentional sample modifications. Although such “hybrid
-
renovation construction work · evaluate (numerical or data driven) solutions for automated coordinated planning · develop and evaluate self-learning interactive visualisation technologies
-
in the Power Electronics Group at UT and collaborate with experts from Seine Batteriesysteme, NRG2Fly, and multiple airports. The project also supports open-source developments in MW-charging protocols
-
Vacancies PhD Position in Computational Biology: Digital Twins & Disease Modeling for Precision Osteoarthritis Treatments Key takeaways Osteoarthritis (OA) is a complex disease in which multiple
-
at the heart of multiple Sustainable Development Goals. All around the world, however, water systems are increasingly under pressure. In urban areas, diverse human water demands are rising, e.g. for irrigation
-
. This position offers a unique opportunity to conduct high-impact research at the interface of power systems, converter control, battery degradation, and market economics, with direct pathways to real-world
-
management measures, with model calibration and validation using observational data. You will test the representation of various water management measures in the model (e.g., weirs, controlled drainage
-
Vacancies Two PhD positions on Flexible and User-adaptive statistical inference Key takeaways You will develop a mathematical framework for multiple testing, enabling flexibility in study design
-
to translate your findings into more efficient production processes and better quality control. Your work will directly promote sustainability through reduction of material waste in production and pigment
-
of the procedure and improve clinical outcomes, the goal of this research project is to develop methods for modeling and controlling a range soft/flexible surgical devices and medical microrobots, as they interact