Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
is the development of hybrid models that combine our integrated national model of Denmark with AI-based methods to improve predictions of floods and droughts. We seek to enhance our ability to predict
-
pursues the formalisation of computing in an open access, universal repository. Our vision is to unlock the combined potential of humans and artificial intelligence (AI) for the rapid and reliable
-
electricity generation, energy prices and wider energy-system conditions. The work will combine process simulation with operational optimization, techno-economic assessment and model validation. The research
-
. Please find and follow guidelines and further information on PhD scholarships and the PhD Program at https://www.cbs.dk/en/research/phd-programme Details about CBS and the Department of Marketing
-
to molecular hydration. The student will develop experimental methodologies and combine these with state-of-the-art characterization techniques, including Magnetic Resonance Imaging (MRI), Nuclear Magnetic
-
combine state-of-the-art machine learning and protein design methods with experimental structural biology and immunological characterization. Potential project directions include: • Design of vaccine
-
, Technical University of Denmark (DTU), as Senior Researcher. The position combines primarily a teaching and training mandate with applied research in computational genomics of microbial pathogens
-
Development of novel concepts to combine ingredients from different types of biomasses to produce tasty hybrid foods Development of technologies that can ensure high oxidative stability of novel hybrid foods
-
project will focus on developing intelligent AI systems, language language models (LLMs), and AI-for-Science approaches that can be integrated into the GPAP platform. The project is expected to combine
-
DTU Tenure Track Researcher in Neutron Spectroscopy - Uniaxial Pressure Studies of Quantum Materi...
the instrument. The project focuses on the use of uniaxial pressure as a controlled way to perturb exchange interactions in quantum and functional materials. By combining uniaxial pressure with inelastic neutron