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to excellence in research, education, and innovation. Our research spans Internet of things, machine learning, signal processing, to digital twins, all with a strong emphasis on high impact research and societal
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mathematical and analytical models to predict coil loss, facilitating the optimal design of HPMCs Constructing a large-signal platform to measure coil loss of HPMCs Exploring innovative solutions, such as new
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atmospheric particles, that impact atmospheric chemistry, air quality and climate. SOA particles can respond to changes in atmospheric conditions by undergoing phase separation or mixing. This results in
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to developing software solutions for data collection, signal processing (e.g., drift correction) and visualization. Ultimately, the goal is to demonstrate the prototype at the seabed. The candidate is expected
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signalling, which are essential for the development and function of most tissues and organs in our body, including our sensory system. Mutations impairing cilia formation or function cause >35 severe human
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skills and problem-solving mind-sets. It is desirable that the candidates have strong knowledge in at least one of the following research directions: 1) array signal processing 2) Radio channel sounding
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of Electrical and Computer Engineering (ECE) at Aarhus University, a dynamic and growing department committed to excellence in research, education, and innovation. This position is anchored within the Signal
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, 2025, or as soon as possible thereafter. The postdoc position is available in the group of Associate Professor Aida Solhøj Hansen, focusing on cellular signaling by extracellular vesicles in inflammation
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the role and mechanisms of receptor signalling in neuronal plasticity. The center of Excellence for “Protein in Memory” seeks to understand the molecular basis for memory with an emphasis on protein
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. The impact of power electronic converter front-end will be needed to be taken into account and the DT should cover large and small signal models as well as milli-seconds transition behavior to completely map