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, coordinating cell-based assays and labeling strategies, and contributing to automation and AI-driven imaging and modeling workflows. The role involves close collaboration with computational and engineering
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living cells. The project will involve experimental work with biophysics techniques, such as microscope operation and sample-labeling strategies. Microscopy-based assays and image analysis will be
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or labelling. The student will be affiliated with the Linnaeus University Centre for Biomaterials Chemistry , a dynamic and interdisciplinary research environment that merges theoretical and experimental basic
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microscopy to quantitatively study dynamics in living cells. The project will involve experimental work with biophysics techniques, such as microscope operation and sample-labeling strategies. Microscopy-based
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live-cell imaging to join the Advanced Optical Bio-Imaging Laboratory (http://www.testalab.org ) in Stockholm as a Research engineer. The position focuses on the investigation of different labelling
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production and validation of radiotracer molecules for both clinical and pre-clinical PET studies. In close collaboration with Andrea Varrone's research group , you will be part of one of the world's leading
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of different labelling strategies for super-resolution microscopy to quantitatively study dynamics in living cells. The project will involve experimental work on optics and biophysics techniques, such as
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will be part of one of the world's leading PET operations. Description of the subject area Positron emission tomography (PET) is a non-invasive molecular imaging technique that is increasingly used in
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spectroscopies, XPS, XRD, BET, etc.). Utilize isotope labeling to elucidate reaction mechanisms. Collaborate with computational chemists to elucidate reaction mechanisms. Your postdoc work will be crucial
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position is part of the PhD network Physics and Applications of Negative IONS (PANIONS) funded by HORIZON-MSCA-DN-2024. Note that you are recommended to in parallel submit an application for this position