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Field
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. The application scenarios range from quality-control, video-surveillance to automotive. The company collaborates with Fondazione Bruno Kessler in the study and development of advanced low-power
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focus on microfluidic channels with a channel wall of low-stress silicon-rich silicon nitride. The proposed research aims to study the fundamentals of bonding glass or metals to silicon nitride coated
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, and the use of discarding low-quality entanglement (cut-off time). We will use simulation and analytical calculation for doing so. As part of the Doctoral Network collaboration his position includes
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extractive metallurgy techniques. Two main causes of low ore recovery rate in porous media via leaching are identified, i.e., passivation of mineral surfaces and heterogeneity of the flow field, which creates
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are available across a broad range of research areas, including: ● Solvent-based direct lithium extraction ● Low energy capture of industrial carbon dioxide ● Membranes for recovery and re-use of battery metals
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limited. These systems often suffer from low fault detection rates, generate false alarms that reduce energy production, or fail to identify faults sufficiently early to avoid costly repairs. Moreover
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Fuel cells and water electrolysers are key technologies for the transition to a low-carbon energy system, enabling the efficient conversion between chemical and electrical energy and supporting
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processing could lead to low latency, low power dissipation, and fully utilize the intrinsic parallelism of light through wavelength or polarization multiplexing, enabling energy-efficient, high-speed, and
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seals. The project will focus on microfluidic channels with a channel wall of low-stress silicon-rich silicon nitride. The proposed research aims to study the fundamentals of bonding glass or metals
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. The study of quantum particles in restricted geometries has become a pillar of modern low-energy physics, exemplifying how theoretical predictions can be realized in the laboratory and how, in turn