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Your position You will work on the development of a nanopore-based platform for single-molecule analysis of nanoclusters. Your research will include: • Establishing nanopore assays for detecting and
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Your position We aim to pursue a new interdisciplinary approach, combining the synthesis of multi-functional culture-matrices with cell-instructive viscoelastic properties, in-depth cell
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directions include: ● Generative models of cell–cell communication . Move beyond descriptive ligand–receptor analysis to models that predict and help understand how cells react to signaling cues. ● Joint
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(fluid dynamics) is highly beneficial Experience with statistical analysis, coding (R or Python), and digital modelling strongly preferred Willingness to travel (minimum to UK for experimental work
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research exploring the processes controlling tropospheric composition (gases and particles) and their intersection with global change. Research makes extensive use of global modeling tools (GEOS-Chem and
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heat stress and improve thermal safety, comfort, and performance in challenging environments. Your tasks Your task will be Develop, adapt, and validate experimental and computational methods
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. Empa is a research institution of the ETH Domain. The Nanomaterials in Health Lab is a truly interdisciplinary environment that conducts pioneered investigations on particle bio-functionalization
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conducts pioneered investigations on particle bio-functionalization, particles uptake, accumulation, translocation across biological barriers and their bio-responses. With this we provide key contributions
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communication. Move beyond descriptive ligand–receptor analysis to models that predict and help understand how cells react to signaling cues. ● Joint models of regulation and dynamics. Flow- and diffusion-based
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. Interest in agent-based modelling, behavioural modelling, governance scenarios, stakeholder-informed research, or policy analysis. Ability to work independently while contributing constructively