Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
shaping and executing the experimental strategy. Research Environment and Collaborative Structure The position is embedded in the Protein Research Group (PRG), an internationally recognized center
-
Programme (EUDP) and aims to deliver a standardised, robust, and scalable subsea electrode unit for HVDC systems. The PhD project will develop a methodological framework for reliability-based structural
-
read more about career paths at DTU here . Further information You can read more about DTU Space and Astrophysics and Atmospheric Physics at https://www.space.dtu.dk/english/ If you are applying from
-
on Academics in the State. The position is covered by the Protocol on Job Structure. Application Procedure The application, in English, must be submitted electronically by clicking APPLY NOW below. Please
-
structural technologies, this PhD position offers a unique opportunity. Join MET2ADAPT to engage with some of the most challenging and high-impact questions surrounding next-generation wind and wave energy
-
, especially in the rapidly advancing fields of meta-materials, renewable energy systems, and intelligent structural technologies, this PhD position offers a unique opportunity. Join MET2ADAPT to engage with
-
qualifications Your tasks in this interdisciplinary project will include designing and executing state-of-the-art in situ experiments to track structural transformation and reaction rates under realistic
-
ability to work effectively in interdisciplinary teams. A structured and analytical approach to work and problem-solving Experience with research dissemination – publications or conference presentation is
-
drugs. To solve this problem, this project will investigate if allosteric inhibitors can be designed towards a number of transporters sharing the same protein structure folds (the LeuT-fold). The chosen
-
DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
ultrasensitive and quantitative methods for investigating gas-surface interactions on nanoparticles in nanoliter reaction volumes. Relating the three-dimensional surface structure, dynamics and catalytic functions