21 postdoctoral-in-optical-transmission PhD positions at Technical University of Denmark in Denmark
Sort by
Refine Your Search
-
and research cover separation processes, reaction engineering, dynamics and process regulation, process and facility planning, unit operations, heat transmission, fluid mechanics and applied
-
, or a related discipline. Hands-on research experience in one or more of the following areas will be considered an advantage: Confocal microscopy and Image processing Optical bench instrumentation
-
find working solutions to major research challenges in an ambitious field of quantum technologies. More specifically, you will be: Building advanced optical setups for cutting-edge experiments in quantum
-
optics, solid-state physics, or sensing technologies. Ideal candidates have experience or motivation to work with optical setups, microwave control, spin physics, or diamond materials, and are willing
-
Image processing Optical bench instrumentation – set up and alignment Numerical modelling Scientific software development Geochronology You should possess strong communication and academic writing skills
-
, or related subjects. Courses or experience in the synthesis of nanomaterials. Courses or experience in characterization techniques such as XRD, Raman spectroscopy, infrared (IR) spectroscopy, transmission
-
loads — EV fleets, residential batteries, smart heat pumps, and data-center clusters — across distribution and transmission networks is critical to unlocking deep decarbonization and maintaining grid
-
estimation of rotating tools. Direct tool wear characterization will be based on optical measurement systems and data processing to achieve wear feature recognition and quantification. Indirect tool wear
-
for the PhD education . Assessment The assessment of the applicants will be conducted by Professor Tomislav Dragicevic and Postdoctoral Researchers Pere Izquierdo and Miguel Lopez. We offer DTU is a leading
-
collaborate closely with a postdoctoral researcher responsible for in-situ fatigue testing under corrosive environments, and will participate in the 4D (x,y,z,time) analysis of the AM microstructure and crack