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100%, Zurich, fixed-term The Frazzoli group at the Institute for Dynamic Systems and Control (IDSC), Department of Mechanical and Process Engineering (D-MAVT) is looking for a Ph.D. student in the
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include low energy-consuming electric-field-controllable non-volatile memory elements with high information density. The recent progress in controlling the electrostatic and elastic boundary conditions in
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triggered with local wound relevant stimuli such as pH and temperature. Investigate controlled release of active biomolecules from the hydrogel systems and the resulting antimicrobial and antioxidant
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chemical and physical surface functionalization. The goal of the PhD project is to investigate how enzymes can be encapsulated in biocomposites to control both the assembly or crosslinking of biopolymers as
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in biosensing, control switches, signal amplifiers and modulators, and high-performance photocatalysis. The conventional plasmonic materials include noble metals, e.g. gold, which was extensively used
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of the art integrated photonics and RF control. Job description The project aims at conducting experiments for cavity quantum optomechanics with levitated nanoparticles. In this context, you will be involved
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. Empa is a research institution of the ETH Domain. In our research group, we design smart stimuli-responsive (nano)-materials that can be applied as diagnostic tools or as controlled drug delivery systems
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components, oxidation control, as well as the feasibility and application potential of multi-constituent nanopastes. This PhD project runs over 4 years with a final degree granted by ETH Zurich.
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are critical for human performance, with respiratory control and function of respiratory muscles playing a central role. This is particularly evident in patients with pulmonary, cardiac, or neuromuscular
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approach for defect control in metal-assisted chemical etching (MacEtch) of silicon. The ultimate goal is to create high aspect ratio absorption gratings for X-ray grating-based interferometry, used in