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for molecular systems and thin films in combination with AI-driven process optimization. Help us shape the future of chemical research! Self-driving lab platform for photochemical and porosity research Join a
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in thin-film physics, particularly hard ceramic coatings. The position involves conducting application-inspired basic research on thin film materials where the main goal is to develop new
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scene, and leveraging that understanding for localization and navigation. A robot builds a picture of its surroundings one lidar scan at a time. Each scan on its own says very little; together
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pipetting, preparation of buffers and solutions, pH adjustment You are interested in combining different types of experiments: preparing MOF materials and thin films, loading peptides into porous materials
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adjustment You are interested in combining different types of experiments: preparing MOF materials and thin films, loading peptides into porous materials, following adsorption and release, and monitoring
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isotope retention properties of boron layers and erosion rates. Boron films in different tokamak regions are subjected to varying degrees of plasma interaction with different ion energies (from few eV
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at radiochemical laboratories of PSI, molecular scale investigations of water and proton transport by quasi-elastic neutron scattering QENS at SINQ / PSI, and dielectric characterization of thin clay films at TU
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property testing, with a particular focus on materials for sustainable technologies. The division provides a stimulating interdisciplinary environment with strong expertise in materials theory, thin films
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electrochemical measurements, elemental analysis Optimize polymer thin-film formation using different techniques Probe signatures of stacked-ring aromaticity and strong interchain interactions via spectroscopic and
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Electronics, will use computational simulations to study how thin films form during flowable chemical vapor deposition (FCVD), a process used to build advanced semiconductor devices. Unlike traditional CVD