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tasks You will be based at Empa to characterize the physio-chemical properties of plastic particles and will use ice nucleation instruments at ETH Zurich to simulate cloud ice formation processes. Prepare
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(acoustics/multi-physics simulation, experimental planning, setup, measurements, analysis) Conceptualization and realization of novel setups (hardware integration, CAD design, assembly, etc.) Software
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physics-based and data-driven modeling and data-analysis skills (e.g. Python, MATLAB, or comparable tools) are an advantage High interest in interdisciplinary research Excellent communication skills and
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focus lies on nucleic-acid delivery for next-generation therapeutics. This PhD project aims to develop lipid-based nanoparticles for the controlled co-delivery of multiple genetic cargos to cancer cells
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of this PhD project is to investigate lithium- and sodium-based solid-state batteries using muon-based bulk and interface characterization techniques. The main objective is to gain a mechanistic understanding
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using synchrotron- and neutron-based spectroscopic techniques Development and validation of quantitative physical models describing charge transport, proton dynamics and electrochemical conversion Writing
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and biological systems. To this end, we develop practical, clinically and diagnostically relevant cell-based models such as co-cultures and organoids. System-Engineer Cell Culture Automation 80 - 100
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development of new sensors, support nanoparticle-based cellular reprogramming strategies and identify new omics-based biomarkers. We work closely with clinical partners and we focus on deep understanding
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on 3D X-ray based digital pathology and corresponding image processing methods, you are highly motivated, a team player, communicative and passionate working in an interdisciplinary field and fulfill