Sort by
Refine Your Search
-
Employer
- Chalmers University of Technology
- KTH Royal Institute of Technology
- Umeå University
- SciLifeLab
- University of Lund
- Karolinska Institutet (KI)
- Lulea University of Technology
- Lunds universitet
- Mälardalen University
- Luleå tekniska universitet
- Blekinge Institute of Technology
- Luleå University of Technology
- Umeå universitet stipendiemodul
- Uppsala universitet
- Institutionen för biologi och miljövetenskap
- Jönköping University
- Karlstad University
- Linköping University
- Linköping University (LiU)
- Sveriges Lantbruksuniversitet
- The Swedish University of Agricultural Sciences
- Umeå universitet
- University of Borås
- University of Skövde
- Uppsala University
- universitypositions
- 16 more »
- « less
-
Field
-
information see (https://lundmark-lab.se/ ) Work responsibilities Culturing and analysing mammalian cell models for infection Designing and developing infection models of flavivirus and alphaviruses Generating
-
skills. Join us at KTH KTH shapes the future through education, research and innovation. As a leading international technical university, we play an active role in advancing the transition towards a
-
species, a storm-exposure hazard index, and bark-beetle susceptibility signals, designed in collaboration with regional authorities and forest owners associations. As part of this work, the project will
-
The Faculty of Engineering and Health Sciences provides education and conducts research in engineering, health and information design, with a clear focus on addressing societal challenges. Our
-
are designed as a pair. In-house capabilities include an Ar glovebox, Schlenk lines, air-free PXRD, single crystal diffraction, TGA-DSC, Raman & IR spectroscopy, in part housed in the Chalmers Materials Analysis
-
, University of Skövde. One of VE's main visions is to contribute to a "viable society" by developing future production systems, optimizing manufacturing methods and prioritizing human-centered design in
-
fragmentation as the mechanisms that reshape the network of conducting contacts. The framework is validated against experimental data from the COMPEL collaboration and delivers a design and operating map
-
or complex systems models of mobility under disruption. Contributing to the design of dynamic synthetic populations and behaviourally plausible mobility agents. Modelling how individuals, groups and networks
-
. About us The Department of Life Sciences is aiming at bridging cutting edge life science research with biochemical engineering, in order to emerge as the leading innovation center in the region
-
, use imitation learning algorithms to learn pick-and-place actions, design HRI experiments with users, evaluate data, and share the code and benchmarks in open repositories. This postdoctoral position is