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propagation are well established. Extending these concepts to nonlinear mechanics, particularly for vibration-based energy harvesting and sensing through the collective dynamics of quasiperiodic topological
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of ferromagnetic steels through magnetoelastic coupling. Classical magnetic techniques (e.g., Barkhausen noise, incremental permeability) under unidirectional configurations provide indirect stress indicators but
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in a vacuum using a laser focused by high numerical aperture optics. The laser produces an optical force equivalent to a mechanical spring, and the system can be considered as a mass-spring resonator
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for new wind farms. In this context, accurately predicting the propagation of wind turbine noise in the atmosphere is essential to better understand the underlying physical mechanisms and to conduct
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mechanisms. iii. Develop and implement measurement protocols, experimental setups, and data acquisition procedures for airborne and structure-borne noise studies. iv. Analyse measurement data using specialised
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LMPS - CNRS - CentraleSupélec - ENS Paris-Saclay | Gif sur Yvette, le de France | France | 13 days ago
Website https://adum.fr/as/ed/voirproposition.pl?site=adumR&matricule_prop=70054#version Requirements Research FieldEngineering » Mechanical engineeringEducation LevelMaster Degree or equivalent Skills
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: design and implement technologies and algorithms (including feedback control design and implementation) to reduce the noise sources that limit the current detector sensitivity; model optical subsystems
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Institut National des Sciences Appliquées de Lyon | Villeurbanne, Rhone Alpes | France | 20 days ago
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) technologies
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between the Institute of Sound and Vibration Research, the School of Biological Sciences, and Mechanical Engineering at the University of Southampton. Plants emit sound—particularly under stress—and may
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program faculty in laboratory instruction. Set up laboratory equipment such as hydraulic/pneumatic, mechanical systems, motor control, electrical, PLCs, conveyors, instrumentation, and robotics; designs and