121 high-performance-computing positions at Aarhus University in Ireland-University-Ranking-2024
Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
teaching environment and to the faculty’s overall research strategy. You will contribute to the development of the department both individually and in collaboration with others via your research of high
-
demanding PhD programme are interested in engaging in an international research environment What do we offer? Aarhus BSS is part of Aarhus University, an internationally recognised research university with
-
and experiments with modelling of these experiments. As part of this, we have developed new algorithms and a completely new web-based platform – EasyNMR - for performing such modelling/simulations. With
-
positioning. The project is expected to generate high-quality research on how consumers evaluate novel fermented plant-based foods and how consumer insights can inform product refinement, communication
-
on transition metal catalysis applied to the conversion of specific plastic types to carbon capture materials. The position will focus on different catalytic processes and improving their performance
-
computed tomography for proton therapy, as per October 1, 2026, or as soon as possible thereafter (after agreement). The working place for the postdoc will be the Danish Centre for Particle Therapy (DCPT
-
such as Google Earth Engine statistical modelling, machine learning, cloud/high-performance computing retrieving ecologically relevant environmental data from national to global databases research and/or
-
contribute to high-impact research at the forefront of biodiversity science and global change ecology. You will work on combining extensive biodiversity datasets, innovative geospatial products, and remotely
-
epigenetic regulation in development. An interdisciplinary environment with opportunities for collaboration across experimental and computational life sciences within MBG and the broader Aarhus University
-
. The position is part of the EU-funded EVOLVE project and focuses on controlled-environment biological testing of extracellular vesicles as a non-GMO platform for steering plant performance and plant-microbe