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Field
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frames. Contribute to fabrication using composite and polymer additive manufacturing. Prepare and execute aerodynamic, vibration, and endurance testing campaigns. Assist in assembling and calibrating
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phase vibrational spectroscopy (IRMPD). This technique uses state-of-the-art lasers coupled with mass spectrometry, ion trapping, and ion sources. The candidate will study the effects of molecular
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mechanical properties, based on vibrations generated by ambient noise in the reactor. Noise sources in the reactor can be of various origins. Given the lack of knowledge or the difficulty in determining
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at Umeå University when the CRISPR-Cas9 method was developed. Project description Ice is can be a very reactive geochemical reactor affecting the fate of elements in nature. This experimental (vibrational
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probabilistic modeling of weak signals in the image related to sensor noise developed on JPEG images [Taburet et al., 2020, Giboulot et al.,2021, Giboulot et al.,2022]. The modeling of the sensor noise will be
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aerodynamic, vibration, and endurance testing campaigns. Assist in assembling and calibrating morphing-wing UAV prototypes. Methodology: Design and Simulation: ABAQUS, SolidWorks, ANSYS, or COMSOL for topology
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volcanism. Physical oceanography: analysis of surface gravity waves, infragravity waves, internal tides, and vortex-induced vibrations for estimating ocean current speeds. Acoustic ecology and ship noise
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(e.g., XES, XANES/EXAFS, resonant/non-resonant scattering). Diagnose and mitigate performance limiters (e.g., vibration, magnetic fields, microphonics, thermal loading, stray light), and contribute
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will do this with a focus on indium phosphide (InP) based monolithic technology, operating around 1550 nm, i.e., the telecom wavelengths. The goal is to invent and develop novel low-noise and ultra
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challenges such as reducing the impact of noise in everyday life and extracting meaningful information from degraded acoustic signals for biomedical and assistive applications. Research topics include speech