Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- CNRS
- Luleå tekniska universitet
- VIB
- Leiden University
- Fondazione Bruno Kessler
- Linköping University
- Maastricht University (UM)
- Paul Scherrer Institut Villigen
- Umeå University
- Amsterdam UMC
- COFUND QuanG
- Curtin University
- Deutsches Elektronen-Synchrotron DESY
- Deutsches Elektronen-Synchrotron DESY •
- European Synchrotron Radiation Facility
- European XFEL
- Forschungszentrum Jülich
- Institut Agro Rennes-Angers
- Institute of Photonic Sciences
- Itä-Suomen yliopisto
- KU LEUVEN
- Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr
- Max Planck Institute for Solar System Research
- Monash University
- UNIVERSIDAD POLITECNICA DE MADRID
- Umeå universitet
- Universidad Complutense de Madrid
- University of Amsterdam (UvA)
- University of Birmingham
- University of Bristol
- University of Copenhagen
- University of East Anglia
- University of Göttingen •
- University of Hamburg •
- University of Oslo
- University of Tübingen
- University of Tübingen •
- 27 more »
- « less
-
Field
-
materials. Structural and morphological characterization techniques, such as electron microscopy, X-ray-based techniques, or related methods. Thermoelectric materials and devices, or thermal energy harvesting
-
metallurgy or additive manufacturing; characterisation using advanced electron microscopy and x-ray diffraction techniques; mechanical testing using macro/micro-mechanical methods and failure investigation
-
, parabolic equations, ray-tracing. Skills: excellent computational skills: Python, Fortran, HPC. Language skills: Fluent in English, Spanish is not required but advantageous. Specific Requirements We
-
MATRIX project (Matter in Action with Ultrafast Optical and X-ray Lasers) funded by the Comunidad de Madrid (Spain). The MATRIX project The main objective of the MATRIX consortium "Matter in Action with
-
disentangle magnetic and structural contributions to electron diffraction data and to compare the results with measurements recorded using X-rays and neutrons. Simulation and interpretation of experimental data
-
will rely on analytical techniques based on elemental mass spectrometry (ICP-MS) and molecular mass spectrometry (LC-ESI-Orbitrap-MS), as well as imaging techniques (X-ray microfluorescence) and
-
microscopy, X-ray-based techniques, or related methods. Thermoelectric materials and devices, or thermal energy harvesting. Fabrication and characterization of flexible, soft, or deformable electronic
-
collaborate with various partners in the consortium, including partners working on catalyst synthesis, complementary surface X-ray diffraction, and complementary (in situ) electron microscopy. Secondments
-
3.4 km-long X-ray laser, which produces X-rays of unique quality for studies in physics, chemistry, the life sciences, materials research and other disciplines. The diverse scientific facilities
-
coalescence under thermomechanical loading using scanning electron microscopy (SEM) and X-ray microtomography. Ultimately, the validated virtual laboratory will provide reliable predictive indicators and