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on established expertise in nanoparticle synthesis and surface chemistry, this project will optimize nanomaterial design for circulation, targeting, and therapeutic performance in neuroblastoma organoids, enabling
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promising candidates for this goal, combining fast electrical control, compact device geometry, and excellent performance in a semiconductor platform. As this technology advances, one of the main remaining
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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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. Isolate and characterize tumor-infiltrating lymphocytes (TILs) from patient samples. Perform single-cell profiling of immune cell transcriptomes and TCR repertoires. Reconstruct and functionally validate
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. Empa is a research institution of the ETH Domain. Smart and Sustainable Resilient Performance-based Cementitious Composites for Adaptive Strengthening and Repair System (SURPASS) is an EU Horizon
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delivery performance in relevant in vitro 3D tissue models. The project combines nanoparticle formulation, colloidal self-assembly principles and advanced physicochemical characterization with cellular and
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to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. Smart and Sustainable Resilient Performance-based Cementitious Composites for Adaptive Strengthening and
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performance, recognize misunderstandings and errors, and adapt their learning strategies when difficulties arise. To address contemporary challenges in the control of learning, the project will further
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(written and oral). Our offer The project is planned for 3 years and will be carried out as a PhD thesis. It is supported by Empa under the supervision of Dr. Giacomo Reina. The candidate will perform
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aspects of research, from engineering and fabricating electrically-tunable devices, through designing and assembling experimental setups, to performing magneto-optical measurements. The University of Basel