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transmission electron microscopy (TEM), atomic force microscopy (AFM), and X-ray diffraction (XRD), etc. Prepare manuscripts, reports, and presentations for internal discussions and external publication
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such as tritium (³H) or krypton (⁸⁵Kr) can flow. As the gas circulates, radioactive atoms emit beta radiation, triggering light flashes in the scintillator material. These light emissions can then be easily
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stage/severity and the glycocalyx’s biophysical properties. In this project, you will use a combination of analytical and biophysical tools based on optical tweezers, atomic force microscopy and advanced
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benefit from participation in the UT Southwestern Postdoctoral Training Program. Information on our postdoctoral training program, benefits and a virtual tour can be found at http://www.utsouthwestern.edu
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force microscopy (AFM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and secondary ion mass spectrometry (SIMS). Electrical properties will be evaluated using Hall effect
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lead to the PhD degree. It is a condition that you satisfy the enrolment requirements for the PhD programme at the University of Bergen. We can offer: a good and professionally stimulating working
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immunity. Candidates will be expected to take the lead role in their projects, publish manuscripts as the first author, and present their projects and data at lab meetings, as well as international meetings
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schemes and development opportunities. We support staff wellbeing with work-life balance initiatives and support for physical and mental health. You can find more detail on all of this and more at https
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the production of data, contributing to the writing and editing of grant applications and attending seminars, meetings and conferences. Playing a lead role in coordinating, planning and executing the project tasks
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Foundation (NRF) Fellow at NTU MSE. Eason's research group focuses on materials characterization, metallurgy, and hydrogen technologies, particularly using advanced microscopy techniques such as atom probe