Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Employer
- NIST
- Argonne
- Pennsylvania State University
- University of Sydney
- EPFL
- Aarhus University
- CNRS
- Delft University of Technology (TU Delft)
- Forschungszentrum Jülich
- Istituto Italiano di Tecnologia
- Lunds universitet
- Monash University
- Nanyang Technological University
- Oak Ridge National Laboratory
- Paul Scherrer Institut Villigen
- Rutgers University
- University of Nottingham
- AGH University of Krakow
- AMOLF
- Amgen Scholars Program
- Brookhaven National Laboratory
- COFUND QuanG
- California Institute of Technology
- Carnegie Mellon University
- Center for Drug Evaluation and Research (CDER)
- Deutsches Elektronen-Synchrotron DESY
- Duke University
- Eindhoven University of Technology (TU/e)
- Forschungsverbund Berlin e.V.
- French National Institute for Health Research (INSERM)
- Fundación IMDEA Nanociencia
- Grenoble INP - Institute of Engineering
- INSERM
- Montana State University
- National Aeronautics and Space Administration (NASA)
- SAIT Polytechnic
- ShanghaiTech University
- Technical University Of Denmark
- Technical University of Denmark
- The University of Queensland
- The University of Texas at Dallas
- UCL;
- UNIVERSITY OF SOUTHAMPTON
- UNIVERSITY OF SYDNEY
- University of Bath
- University of British Columbia
- University of California, Los Angeles
- University of Dayton
- University of Florida
- University of Glasgow
- University of Liverpool
- University of Michigan
- University of Michigan - Ann Arbor
- University of Oslo
- University of Sheffield
- Université Sorbonne Paris Nord
- Université de Lorraine
- VUB
- 48 more »
- « less
-
Field
-
and implement advanced high-energy X-ray scattering and imaging methods Coordinate and execute experiments at the in-house beamline and at international synchrotron facilities Collaborate closely with
-
analysis and interpretation of multidimensional microscopy datasets, integrating image processing, spectroscopy, diffraction, and computational methods to extract meaningful scientific insights. 3) Lead the
-
there is interest in expanding to include inverse methods based on model-inspired analysis of experimental data by itself. Additional data streams from infrared imaging and diffraction stress measurements
-
the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray diffractometry, electron backscattered diffraction, transmission electron
-
magnetic hardness, giant magnetoresistance effects, spintronics, magnetic nanoparticles for medical imaging and disease treatment, ferromagnetism in semiconductors, optical transparency in ferromagnets
-
diffraction, x-ray absorption spectroscopy for the quantification of chemical short range order, and automated microstructural image analysis. The simulation approaches of interest include machine learning
-
manufacturing (AM) and repair technologies using non-destructive evaluation (NDE) methods of x-ray computed tomography (XCT), digital radiography (DR), x-ray diffraction (XRD), electromagnetic testing (ET
-
Center for Drug Evaluation and Research (CDER) | Saint Louis, Missouri | United States | 3 months ago
to support regulatory activities. The participant will also learn to characterize physical characteristics of aerosol spray products using instrumentation such as laser diffraction, high-speed imaging, cascade
-
. This PhD project will focus on the design and development of UHT ceramics in the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray
-
transformation, impurity evolution, and microstructure development. The candidate will use advanced in situ X-ray methods, including diffraction, scattering, spectroscopy, imaging, and complementary multimodal