18 parallel-processing-"International-PhD-Programme-(IPP)-Mainz" Postdoctoral positions at Nature Careers in Sweden
Sort by
Refine Your Search
-
, Karolinska Institute. The lab seeks to reveal mechanisms that are responsible for successful regeneration to occur in salamanders, and conversely, highlight processes that prevent comparable injury responses
-
finite-element simulation and topological optimization of light guidance in HCFs, and numerical simulation of thermo- and fluid dynamics under fiber-drawing processes. Apart from the main tasks above, the
-
treat them. The Institute is composed of the following four departments: The Department of Infectious Diseases The Department of Microbiology and Immunology The Department of Medical Biochemistry and Cell
-
physics, applied mathematics, machine learning, bioinformatics, biophysics, spectroscopy, image processing, ecological modeling, molecular biology, plant physiology, marine biology or an interest in gaining
-
and as part of a team. How to apply: The application (reference number FS 2.1.6-755-25) process is done via our e-recruitment system here:https://umustipendie.varbi.com/en/what:job/jobID:838323/ ), by
-
processes. A demonstrated interest in data visualization and large-scale data analysis is highly desirable. The ideal candidate will have a keen interest in understanding complex biological systems
-
Postdoctoral position in fabrication of hollow-core optical fibers for next-generation communication
technology, and electronics and systems engineering. The Department is now seeking a postdoctoral researcher to develop fabrication process for making hollow-core optical fibers for future optical
-
for foreign researchers who place their qualifications in Sweden. Duties and profile This postdoctoral project is focused on applied AI-based computer vision and precision cancer medicine research centered
-
dynamics, as it governs key processes like energy balance, turbulence, and thermal structure, directly influencing ecological and biogeochemical responses. However, modeling these dynamics globally remains
-
of resolving chronic inflammation and reactivating repair processes. To achieve this, we are: (i) constructing single-cell gene expression maps of human acute and chronic wounds (e.g., PMID: 39729995); (ii