Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Delft University of Technology (TU Delft)
- Eindhoven University of Technology (TU/e)
- University of Nottingham
- CNRS
- University of Exeter
- University of Warwick
- AALTO UNIVERSITY
- Fondazione Bruno Kessler
- Monash University
- NTNU - Norwegian University of Science and Technology
- National Research Council Canada
- Tilburg University
- Aalborg Universitet
- Aalborg University
- Atominstitut TU Wien
- BAM Bundesanstalt für Materialforschung und -prüfung
- CESI
- ETH Zürich
- Friedrich Schiller University Jena •
- Inria, the French national research institute for the digital sciences
- Institute of materials and machine mechanics Slovak academy of sciences
- KNAW
- KU LEUVEN
- Lulea University of Technology
- NTNU Norwegian University of Science and Technology
- Oak Ridge National Laboratory
- RMIT University
- TU Wien
- Technical University of Denmark
- The University of Manchester
- University of Birmingham;
- University of Liverpool
- University of Luxembourg
- University of Twente
- University of West Bohemia
- 25 more »
- « less
-
Field
-
PhD Studentship: Advancing solid-state battery electrolyte manufacturing with terahertz spectroscopy
MATLAB/Python and signals processing Understanding of electromagnetics Genuine interest in battery technologies Experience with CAD and mechanical design How to apply: Candidates should submit
-
compare results with electromagnetic simulations; publish research results in leading international journals and present them at international conferences. Where to apply E-mail [email protected]
-
BAM Bundesanstalt für Materialforschung und -prüfung | Berlin, Berlin | Germany | about 2 months ago
Electromagnetic Methods Science / Research The working time is 100% (Part-time work is possible) Temporary contract for 36 months Job-ID: J000000183 Salary group E 13 TVöD Apply online now The Bundesanstalt für
-
sovereignty, and cyber-electromagnetic resilience. The PhD researcher will primarily work within Tilburg University’s AI research infrastructure, focusing on algorithm development, model training, and
-
requires overcoming coupled challenges in device switching behaviour, converter design, electromagnetic interference, thermal management, and long-term reliability. This PhD project will investigate advanced
-
visual neuroscience laboratories; Dedicated simulation and modelling softwares for electromagnetic and optical design; Access to dedicated cleanroom fabrication facilities; A collaborative research
-
using light). Facilities and research environment: High-performance computing facilities; Photonics and electromagnetics laboratories; Experimental platforms for optical (light-based) computing; A
-
detection in space applications. The activity will include numerical electromagnetic modelling, cleanroom fabrication, and optical/electrical characterization aimed at optimizing resonance control, absorption
-
study these media in electromagnetics and acoustics, based on asymptotic models. We will examine the stability of spectral properties with respect to symmetries as well as the behavior of these media in
-
electromagnetic signatures, primarily focussed on linking the data from these exciting experiments with our theoretical understanding of gravity and the most extreme regions of the Universe. I am a member of the