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, or similar Proficient knowledge of and previous experience with R and Python, survey design, experimental design, field experiments and quasi - experiments are an added value Strong interest to work in
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: Design and perform experiments using NMR spectroscopy and single-molecule FRET Purify and biochemically characterize proteins and their complexes Analyze and interpret advanced biophysical and single
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microchannel manifold ensures precise drug delivery to various zones of the denture and the underlying gingiva and mucosa. Finally, by designing and implementing intelligent control system to automate the entire
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the interaction in transient state between tribological and thermal properties in textiles by in-situ 3D and 4D microCT Design and execution of tribological, thermal, optical (IR) and mechanical tests on different
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towards a fair and sustainable future for humankind. The main goal of PhD project is to develop a new generation of catalytic nanomaterials for water treatment, made of Earth-abundant elements and designed
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unprecedented detail, thereby gaining access to previously overlooked effects, like dynamic disorder, with far-ranging consequences for the design and functional understanding of protein systems. As a PhD student
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of labeled phospho-tyrosine. Your tasks will encompass utilization of state-of-the-art bionformatic tools for protein design, perform high-throughput cell uptake tests, perform selection assays and express
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requires a very high level of experimental skills, an analytical mindset for interpreting results, and the ability to design innovative experiments. You are a team player and your strengths include taking
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technologies with CO2 emitters The Energy and Process Systems Engineering (EPSE) Group at ETH Zürich is looking for a doctoral student to design a decision workflow for assigning CO2 capture technologies
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tissues and tissue models by merging high-resolution 3D bioprinting with in situ perfusion systems, enabling direct graft maturation in the printing environment. Your work will bridge biopolymer innovation