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to advancing innovative solutions for vibration and noise control in lightweight structures (https://cordis.europa.eu/project/id/101227712 ). The project focuses on the development of Acoustic Black Hole (ABH
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acoustic sources on marine fauna. The activity focuses specifically on the study of the propagation of continuous and impulsive noise for the evaluation of the impact of noise on marine mammals using
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to brief, very loud sounds (e.g., gunshots, chainsaws) or to prolonged moderate level noise (e.g., factories, concerts). Each exposure may produce a temporary threshold shift (TTS), a short lived increase in
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underwater acoustics and marine ecology. CMST pioneers innovative methods to monitor and manage marine environments. We measure, monitor, model, and predict anthropogenic noise. We are experts in sound
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. You will also contribute to research, and industry engagement in areas such as environmental noise, and urban and archaeological acoustics. This is an opportunity to shape a growing area within a
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everyday life we are repeatedly exposed to brief, very loud sounds (e.g., gunshots, chainsaws) or to prolonged moderate level noise (e.g., factories, concerts). Each exposure may produce a temporary
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. The work includes extraction of underwater noise metrics, detection of cetacean and other marine fauna sounds, and characterization of the underwater soundscape. Analysis of concurrent acoustic and video
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conducted using the microphone arrays and data acquisition systems available at the laboratory, complemented by simulations of known acoustic fields (e.g., radiation from a vibrating plate). The performance
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sensor to power mobile noise measurement stations. Make an energy collector. Estimate the energy collected. Where to apply Website https://seuelectronica.upc.edu/en/procedures/call-for-recruitment-of-ptgas
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vibrations (Pettigrew & Taylor, 2003). While flow-induced vibrations of single cylinders have been extensively studied, fewer investigations have addressed the case of multiple interacting cylinders (Tang et