Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Forschungszentrum Jülich
- University of Oregon
- CNRS
- Delft University of Technology (TU Delft)
- ICN2
- The University of Manchester
- University of A Coruña
- Babes-Bolyai University
- COFUND QuanG
- Duke University
- European Synchrotron Radiation Facility
- Helmholtz-Zentrum Berlin für Materialien und Energie
- Istituto Italiano di Tecnologia
- Linköping University
- Max Planck Institute for Sustainable Materials •
- NOVA.id.FCT- Associação para a Inovação de Desenvolvimento da FCT
- NTNU - Norwegian University of Science and Technology
- NTNU Norwegian University of Science and Technology
- Technical University Of Denmark
- University of Antwerp
- University of Bremen
- 11 more »
- « less
-
Field
-
structure and their growth by transmission electron microscopy (TEM) is hereby of crucial importance. During the PhD position, the candidate will use state-of-the-art equipment and local spectroscopic
-
, numerical process simulation, and advanced characterization techniques (synchrotron, TEM, EBSD), will be implemented. The ideal candidate will hold a Master's degree or an engineering degree in Materials
-
://socialsciences.uoregon.edu/anthropology/research/research-labs . Position Summary Pro Tem Research positions will be limited-term appointments with durations not to exceed one year. Some positions may carry a possibility of
-
advanced TEM techniques, with a strong focus on Lorentz microscopy and off-axis electron holography for quantitative magnetic imaging. The project will involve extensive use of a new state-of-the-art liquid
-
scientists, software engineers, and experimental researchers on topics including: Developing multi-scale and multi-modal representation learning methods for scientific imaging data (e.g., SEM, TEM, EBSD
-
characterisation facilities at Manchester and the Royce Institute. Significant dedicated time has been secured on instruments, including high-resolution SEM, TEM, EBSD, EDS, and XRD. This means you will not only
-
techniques such as scanning electron microscopy (SEM), Transmission electron microscopy (TEM) and X-ray diffraction (XRD) to study the materials at the microscale and nanoscale) as well as access to National
-
APT, TEM, FIM, EBIC, EBSD, XPS Kelvin probe microscopy, machine learning augmented analysis techniques) Experimental and computational analysis of transport and the reaction of surfaces and particles
-
functionalization. Chemical characterization by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM
-
degree (300 ETCS in total). - Knowledge in nanomaterials and nanoscience. - Knowledge of experimental techniques (sputtering, XRD, TEM, SEM, magnetometry, etc.). - Outstanding CV and, more importantly, a