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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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’ adaptability, environmental benefits, and the ecosystem service provisioning. A central component involves collaborating with different kinds of stakeholders to understand restoration and agroforestry needs and
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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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in a label-free manner. In this project, we will develop a novel label-free SMDT that can synergistically detect both charge and conformation of biomolecules based on nanopore and nanowire field-effect
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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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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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labelled in a way that clearly shows their content. Applications must be received by: 2025-10-22 The University works actively to achieve a working environment with equal conditions, and values the qualities
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into English. All attachments must be labelled in a way that clearly shows their content. Applications must be received by: 2025-10-22 The University works actively to achieve a working environment with equal
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We are looking for a postdoc to join our team at the Department of Microtechnology and Nanoscience, Chalmers. Become part of our innovative group and contribute to exciting research in
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The Wallenberg Centre for Molecular Medicine (WCMM) at Linköping University launches a new Postoc program searching for the next generation of leading scientists! WCMM Linköping is part of a