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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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accounting for the use of biobased components. About us The position is located at the Department of Chemistry and Chemical Engineering in the Bordes Research Group, which has long experience in formulation
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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