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fellow in Environmental Radioactivity/Environmental Radiochemistry Knowledge of the behaviour of radionuclides in the environment is fundamental in limiting the potential impact on humans and the
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will also international collaborations and is a unique opportunity to work in an interdisciplinary environment. The PhD student will: Develop theoretical and computational models for interfacial flow and
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regulations may shape the physical and digital worlds. However, these are intertwined in the Metaverse. Thus, the administrators of Metaverse environments may be required to execute certain governance policies
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(university course or practical experience) Work at enzyme level (university course or practical experience) Field work in aquatic environments Experience or courses in R, Python, MATLAB or similar platforms
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environment. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/262071/phd-research-fellowship-in-fluid-mechanics-interfacial-flow-in-cells Requirements Research
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environments Experience or courses in R, Python, MATLAB or similar platforms You need to: have a documented interest in aquatic ecology have the ability to work scientifically, both in a team and independently
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) works with nature and the environment, sustainable use of natural resources, biological and geological processes. MINA’s employees undertake teaching, research and dissemination within the fields
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environment. The PhD student will: Develop theoretical and computational models for interfacial flow and wetting on cell membranes. Implement and solve numerically the theoretical membrane model. Collaborate
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within one of the topics described above, in collaboration with the supervisors and other members of the research group. Test and evaluate the solution in simulated and real environments. Disseminate
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and distribution shifts. For the application side, the candidate will collaborate with the Institute of Marine Research on valuable image data of the marine environment. This position is placed in