Sort by
Refine Your Search
-
Category
-
Employer
- NTNU - Norwegian University of Science and Technology
- University of Oslo
- University of Bergen
- OsloMet
- Nord University
- Østfold University College
- NHH Norwegian School of Economics
- Norwegian University of Life Sciences (NMBU)
- UiT The Arctic University of Norway
- ;
- ; University of Strathclyde
- Molde University College
- Norwegian Institute of International Affairs
- Norwegian Meteorological Institute
- The Norwegian School of Sport Sciences
- Western Norway University of Applied Sciences
- 6 more »
- « less
-
Field
-
(wind) data. The PhD position entails a combination of theoretical and practical developments, and the candidate will work with simulations, programming, and data processing. The methodologies applied by
-
interdisciplinary center with joint efforts in theory, computer simulations and experiments, both in fundamental and in more applied directions. The center works to advance the understanding of porous media by
-
they release their toxic cargo to kill the cancer cells. Methods include, but are not limited to, in vitro culture of primary human cells and cell lines, organ-on-chip models, molecular biology, diverse
-
Element simulations (e.g. pushover analysis and/or incremental dynamic analysis). Moreover, the project aims to verify the ductility requirements with full-scale experimental results and explore
-
. Magnetic materials like antiferromagnet materials have fast THz spin dynamics, picosecond switching speeds, and net-zero magnetization, making them resistant to external magnetic interference and ideal
-
: Developmental biology; Molecular cell biology; Genomics; Bioinformatics. Education and experience in one or more of the following areas is required: bioinformatics; genomics; molecular developmental biology
-
explanation at the molecular level. The candidate will be located in Norway, Bodø and have at least one research stay at the Roscoff Research station in France. The KELP-SHIELD project ‘Sugar Kelp Priming
-
include, but are not limited to, in vitro culture of primary human cells and cell lines, organ-on-chip models, molecular biology, diverse immunological assays, advanced flow cytometry, fluorescence
-
to enhance their indoor environment in a sustainable and cost-effective way. Simulations in combination with IoT sensors and devices, real-time data collected from pilot-scale and a residential building will
-
modeling to simulate the pavement response under different loading conditions. The research will support improvements of the existing specification for the maximum authorized axle load and mass of vehicles