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understanding of stress and resilience mechanisms. The project is an interdisciplinary effort bridging psychology, neuroscience, endocrinology, and pharmacology. We collect a range of outcomes to understand
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based on fluid mechanics, non-equilibrium thermodynamics and statistical mechanics. Further information about PoreLab can be found here: https://porelab.no/ The position reports to Professor Alex Hansen
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be involved in analyzing both experimental and clinical data, focusing on: • Stress responses and recovery patterns • Endocannabinoid measurements in blood, hair, and cerebrospinal fluid
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experimentation. As the projects evolve, they will also participate in the analysis of bio-fluid samples from animal models and postmortem human subjects to validate discoveries in brain tissues as potential
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this project, the student will gain highly sought-after expertise in experimental fluid mechanics which is a key identified area of growth to enable development of next generation power and propulsion systems
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, physics or related fields • Very good and fundamental knowledge in the areas of fluid mechanics and aero-thermal turbomachinery • High fascination for technical/scientific problems of numerical and