Sort by
Refine Your Search
-
Listed
-
Category
-
Program
-
Employer
-
Field
-
postdoc, you will contribute to research and teaching within advanced modelling, optimization and design of composite and lightweight structures for applications such as wind turbine blades. Your work tasks
-
The Department of Biological and Chemical Engineering, Aarhus University, invites applications for a postdoctoral position on advanced modelling and optimization of pyrolysis plants integrated with
-
applications for a three-year PhD Stipend from October 1st or soon hereafter in dynamic modelling, simulation and optimization of Power-to-X processes for renewable fuel production. The project is primarily
-
Aalborg University, Department of Energy, Campus Esbjerg, invites applications for a three-year PhD Stipend from October 1st or soon hereafter in dynamic modelling, simulation and optimization
-
be to develop and implement optimal control solutions for this process. You will contribute to the development of a mock-up dynamic model of the complete system, building on models developed by project
-
Technology, and the PhD student will be positioned in the Esbjerg Energy section. The position is part of the internally funded research project SURGE: Speed-optimized USVs for Robust Guidance and Offshore
-
, flexibility, and operational efficiency of existing battery recycling processes. Specifically, it aims to improve and optimize cost and recovery efficiency of existing scaled recycling technologies and develop
-
One or more Postdocs in Reliability Assessment and Optimization of Advanced Power Electronic Modules
At AAU Energy, one or more Postdoc positions in Reliability Assessment and Optimization of Advanced Power Electronic Modules are open for appointments from September 1, 2026, or as soon as possible
-
techniques (PINNs, Scientific ML, data-driven optimization, etc) to surpass traditional techniques for discovery, design and optimization of thermal technologies, seeking necessary experimental validation
-
governs their thermal performance, operational robustness and cost. The overall aim of the project is to design, optimize and digitally model the cooling system of a pilot-scale electrochemical reactor