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environment with strong links to both industry and European collaborative projects. Project description You will lead the development of a system-level noise model for ducted fans and propellers, with
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(e.g. in automotive applications) using, for example, vibration and acoustic signals. Research questions include method development for fault detection and isolation, damage estimation systems, including
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particular NMR, chromatography and vibrational spectroscopy. Due to the interdisciplinary nature of the work, the candidate is expected to have excellent collaboration skills. A very good capability of
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step-change in organic semiconductor material design by directly harnessing the power of vibrational modes to improve their functionality in optoelectronic applications. This will be achieved by
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the flexibility of simulated data to systematically explore factors like measurement noise, sampling frequency, and time delays, thereby defining the empirical data requirements for the framework. Apply
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position in active flow control for wingsail performance and operation. The goal is to develop innovative flow control techniques to optimize aerodynamic performance and reduce vibrations in unsteady
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spectrometer with faster acquisition and improved signal-to-noise ratio. The postdoc is also expected to participate in writing the measurement software. The new setup will then be used to study photophysical
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cocktail party problem – since all emitting gravitational wave sources are visible at all times, any individual source must be extracted from the cacophony of noise provided by all the other sources. We wish