22 algorithm-development-"Multiple"-"Simons-Foundation"-"Embry-Riddle-Aeronautical-University" positions at Empa
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. Together with our team of experienced scientists, postdocs and PhD students, you will develop materials that contribute to the development of the next generation of bio-based hybrid materials. The goal
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. Together with our team of experienced scientists, postdocs and PhD students, you will develop materials that contribute to the development of the next generation of advanced hydrogels for wound care
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. Empa is a research institution of the ETH Domain. Our group focusses on the development of carbon-based (thermo)electric nanoscale devices and their application for quantum technologies and energy
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healing. Developing innovative implants that can better integrate with the body, reduce complications, and improve patient outcomes is essential in addressing this urgent healthcare challenge. Though rooted
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. The results are directly relevant to the FOEN and will support regulatory decisions regarding PFASs. Your tasks Develop and validate methods to sample and analyze various PFASs in ambient air Conduct sampling
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materials, technologies and systems. Your tasks Develop a model to investigate strategies to increase dynamic supply of secondary raw materials based on future sources and technologies and explore
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. Utilizing a combination of experimental and computational approaches, we develop and characterize novel functional materials and devices driven by robust nanoscale quantum effects. We are currently seeking a
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. Empa is a research institution of the ETH Domain. Our Structural Engineering Research Laboratory developed new materials, systems, and manufacturing techniques for civil infrastructure use. It is one
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-biodegradable polymers. Your profile Master Degree or PhD in environmental/natural sciences or engineering or similar Experience with development of computational models Preferably some experience with plastics
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) based DCS and develop a spectrometer with unprecedented spectral resolution, sensitivity, and speed. Together with our partners, we will apply this instrument to study the ro-vibrational nature of chiral