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of the workplace. Read more about The Technical Doctoral School of IT and Design Salary and terms of employment The employment is in accordance with the Ministerial Order on the Appointment of Academic Staff
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to estimate flexibility potentials from cooling. It will develop FlexOffer-based techniques for aggregating flexibility from cold production, storage, and demand. It will develop FlexOffer-based optimization
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involved in: Analysis of data from medium and low-cost sensors Analysis of data from cognitive performance assessments and health survey responses Conduction citizen science-based activities in the schools
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of codes/models simulating the nucleation and propagation of stress corrosion cracking in samples under low cycle fatigue conditions, as well as models for linking the microstructure from the AM process to
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. For example, SiC possesses both high second-order and third-order nonlinearity, the former enables frequency doubling, electro-optical modulators (switches) and the latter enables optical frequency combs. More
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high second-order and third-order nonlinearity, the former enables frequency doubling, electro-optical modulators (switches) and the latter enables optical frequency comb (OFC). More importantly, large
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. Responsibilities and tasks Thanks to the unique photonic properties and physical properties of SiC, versatile devices could be achieved on the SiC material platform. For example, SiC possesses both high second-order
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pressure, low temperature, and high salinity, marine microbes efficiently utilize lignin-derived molecules as source of energy, nutrients, and carbon. Aromatic carbon, such as lignin-derived organic matter
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researcher excited about working on the cutting edge of AI/Neuromorphic and user interface design? We'd love to hear from you! Research area and project description A Brain-Computer Interface (BCI) decodes
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transport studies (proof-of-concept): You will conduct low-temperature electronic transport measurements to confirm and characterize fundamental quantum behaviors induced by these nanoscale superlattices