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product quality attributes, such as remaining shelf life. Process measured sensor data of commercial cold chains, analyze data for variability, and reformat data in databases. Use the simulation-based
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applications. The goal of the PhD project is to investigate how natural polymers (e.g. polysaccharides and proteins) can be combined with active natural molecules in compartmentalized responsive hydrogels
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analysis. Experience in formulating and solving mathematical optimization problems is an asset. Proficiency in English is required; good comprehension and oral communication skills in German are desirable
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material processing and assembly strategies. Your tasks Study the triggered enzymatic crosslinking and disassembly of single biopolymer systems. Characterize the evolution of the structure of the biopolymers
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match the chemical, mechanical, and morphological properties of native bone. The role of the PhD student at Empa will be the development of synthesis processes using light-based 3D printing of hydrogel
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. radiomics) in image processing and in programming (Python, C, Matlab etc.) Fluent in English, German is beneficial Our offer We offer an international, highly stimulating research environment with excellent
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on different topics related to wound healing. Project background Wound healing is a complex process in which a cascade of physiological events takes place to restore injured skin to its full functionality
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. Empa is a research institution of the ETH Domain. Your tasks Your tasks will focus on the design and operation of experiments to investigate the failure mechanisms in wooden structures. This will require
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. Demonstrated aptitude for scientific creativity and non-conventional thinking. Fluent in written and oral English. Self-motivated, critical-thinking, open-minded and communicative, with a strong interest to work
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related field. Excellent communication skills and fluency in English (both written and oral) are mandatory. Experience in the field of material synthesis, nanofabrication and/or quantum device