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(NorESM). In the project, the CLM model will be using the FATES (Functionally-Assembled Terrestrial Ecosystem Simulator) terrestrial ecosystem model and the MIMICS+ module for soil carbon decomposition
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simulations of detector responses using the GEANT4 framework. The candidate will be strongly encouraged to actively participate in submitting additional experimental proposals that align with the objectives
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data analysis techniques and software, as well as conducting Monte Carlo simulations of detector responses using the GEANT4 framework. The candidate will be strongly encouraged to actively participate in
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) that is used in the Norwegian Earth System Model (NorESM). In the project, the CLM model will be using the FATES (Functionally-Assembled Terrestrial Ecosystem Simulator) terrestrial ecosystem model and the
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processes as droplets/condensates wet membrane compartments in cells. Numerical simulations and theoretical membrane models will be developed, aiming to couple viscous interfacial fluid flow, elastic
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description (available on request). All applicants should carefully read the Faculty guidelines . CV A copy of the master thesis and, if applicable, a list of other scientific publications. 2-3 personal
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within the frame described in the call and the project description (available on request). All applicants should carefully read the Faculty guidelines . CV A copy of the master thesis and, if applicable, a
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to develop a PhD project within the frame described in the call and the project description (available on request). All applicants should carefully read the Faculty guidelines . CV A copy of the master thesis
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-edge research focused on the simulation of spectroscopic properties to unravel the geometry and electronic structure of complex systems. Key areas of research include electronic spectra simulations (XPS
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the project MinMix (Mineralization as a fluid mixing process) funded by the Research Council of Norway. In this project, we will use advanced time-lapse imaging, numerical simulations, and reactive mixing