Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- CNRS
- NTNU Norwegian University of Science and Technology
- Aalborg University
- UNIVERSIDAD POLITECNICA DE MADRID
- University of Primorska
- Centrum Wiskunde en Informatica (CWI)
- Delft University of Technology (TU Delft)
- ETH Zürich
- Institute of materials and machine mechanics Slovak academy of sciences
- Trinity College Dublin
-
Field
-
motivated candidate to work on a research project focused on the development of a smart acoustic sensing system. The researcher will be employed at UP IAM and become a doctoral candidate at the University
-
. Join SONIFY and contribute to the future of acoustics and sound technology! https://www.upm.es/internacional?id=CON24537&prefmt=articulo&fmt=detail Work Location(s) Number of offers available2Company
-
Ferrer (https://sites.google.com/site/eferrerdg/ ) at the school of aeronautics ETSIAE-UPM in Madrid, Spain. The researcher will develop/implement aero/hydro-acoustics functionalities in our existing high
-
, in collaboration with InnoRenew CoE and UP IAM, is seeking a dynamic and motivated candidate to work on a research project focused on the development of a smart acoustic sensing system. The researcher
-
of such sensors requires a detailed understanding of the coupling between acoustic and optical behaviors, as well as the influence of the localization of optical modes on the acoustic bandwidth of the device
-
knowledge for a better world. You will find more information about working at NTNU and the application process here. About the position The voice carries subtle acoustic indicators of our health - in some
-
initiative will redefine how we preserve and enhance one of Europe’s premier cultural heritage landmarks. This project will delve into aspects of the Long Room that have been largely overlooked: its acoustic
-
appointment from 01.10.2026 or soon hereafter. The duration of the position is three years. Your work tasks ABHSSYS (Acoustic Black Holes for Silent SYStems, Grant agreement ID: 101227712) is a European
-
structure and hydrogen migration pathways. Integrated Approach and Modeling Framework The project is based on a multiscale observation strategy that combines dense nodal seismic networks, distributed acoustic
-
research will initially focus on relatively simple model problems in which mathematical questions can be studied rigorously, before progressing towards multidimensional acoustic and elastic wave propagation