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the position We are seeking a highly motivated PhD candidate to investigate cascading cyber effects, cyber resilience, and advanced cyber range modelling. The research combines simulation, software
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to investigate cascading cyber effects, cyber resilience, and advanced cyber range modelling. The research combines simulation, software development, and experimental validation in the Norwegian Cyber Range
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different academic backgrounds Salary and benefits Opportunity to work on an important social mission with focus on sustainability and future-oriented projects Challenging, exciting and varied tasks in
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in-house design. Strong ability to use simulation software tools including finite difference time domain methods (FDTD), eigenmode expansion methods (EME), or finite-element methods (FEM), using tools
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and application of high-performance hydrodynamic simulation methods, which this project aims to advance. In this project, you will work with an existing high-performance code to perform hydrodynamic
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research direction is the integration of strategic transport models, such as discrete choice modelling (DCM) with agent-based modelling (ABM), to examine potential transport behaviour under different
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of the position Simulate MRI data and model disturbances arising from various physical sources Develop, implement and train INR models for MRI time-series data Analyze functional MRI data of the spinal cord Present
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the following documents: a CV (maximum 2 pages), a copy of your transcript records, and a letter (maximum 1 page) with a description of your research interests and why you would be a suitable candidate for the
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Lukas Stelzl (JGU Mainz) within CRC/SFB 1551, we now want to rebuild active transcriptional condensates from the bottom up - with molecular simulations and C. elegans experiments as direct partners
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modeling, computer simulation, non-linear model analysis, interactive learning environments and decision-laboratory experiments. About the project/work tasks: Description of the INTEGRATOR project