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Field
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for you! Your role and goals Planning and executing laboratory experiments on 2D material nanocomposite synthesis Thin film electrochemical and FET device fabrication and characterization Writing
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generated by relatively small events. The second task is to devise an inversion strategy best suited for small events and the sparse seismic data acquired in geothermal projects. The third task is centroid
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for small events and the sparse seismic data acquired in geothermal projects. The third task is centroid-moment tensor inversion for low-magnitude induced events in geothermal projects, focusing
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systems will be highly appreciated. The candidate should also have knowledge of microfluidics and/or organ-on-chip technologies, as well as hands-on experience with at least one thin-film deposition
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of nanomaterials or thin films, including unconvential sintering approaches. Characterization of the properties of the printed films and resulting devices. Personal Competences: Ability to work with deadlines
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team that includes condensed matter theorists, experts in neutron/X-ray scattering, and experts in thin film and single crystal materials growth and characterization. You will perform cutting-edge
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devices exploiting the nonlinear kinetic inductance of thin superconducting films, including microwave resonators for frequency-domain multiplexed readout of single photon detectors (kinetic inductance
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, including: Polymer preform fabrication and fiber drawing High-shear matrix compounding Thin-film extrusion and structuring Correlate rheological behavior directly with processability (drawability
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-transfer printing. You will be responsible for: Developing novel fabrication methods for solid laser waveguides (e-beam lithography / dry-etch optimization / thin-film development) Testing and characterizing
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/ dry-etch optimization / thin-film development) Testing and characterizing on-chip solid-state lasers Modelling and design of PIC narrow linewidth CW lasers for trapped ion/cold atom/color center quantum