Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Nanyang Technological University
- SINGAPORE INSTITUTE OF TECHNOLOGY (SIT)
- National University of Singapore
- The University of Alabama
- University of Oslo
- Harvard University
- Hong Kong Polytechnic University
- Imperial College London
- Instituto de Ciência e Inovação em Engenharia Mecânica e Engenharia Industrial
- Technical University of Munich
- UNIVERSITY OF SOUTHAMPTON
- Universidade do Minho
- University of Alabama, Tuscaloosa
- University of Birmingham
- University of Michigan - Ann Arbor
- Zintellect
- 6 more »
- « less
-
Field
-
use for materials design. To address this challenge, the project will combine molecular dynamics-generated synthetic microstructures, physics-based forward diffraction models, and generative AI
-
the electrospinning technique, as well as their structural, microstructural, chemical, dielectric, and magnetic characterization, among others. As indicated below, applicants must identify the research grant for which
-
, and conducting experiments to deepen our understanding of the microstructure-property-process relationship. Contribute to ongoing projects rather than focusing on a singular research area, student
-
deepen our understanding of the microstructure-property-process relationship. Contribute to ongoing projects rather than focusing on a singular research area, student advising, and proposal writing
-
packaging and device integration. Conduct microstructural, chemical, and mechanical characterization using appropriate analytical techniques. Collaborate with interdisciplinary researchers to integrate
-
for Electric Vehicle Charging. The SRF should have previous experience in chemical synthesis and analysis, concrete sample preparation, mechanical testing and microstructural characterization (XRD, TGA, FTIR and
-
well as steel fibre reinforced concrete (SFRC), covering materials development, mix design optimisation, and performance evaluation. Perform advanced materials characterisation and microstructural analysis
-
. The goal of the PhD will be to seek mechanistic insight into the electrode polarization processes as well as strategies for improving performance by optimization of composition, microstructure, and the
-
well as strategies for improving performance by optimization of composition, microstructure, and the interface to the proton-conducting electrolyte. The content of the PhD Research Fellowship can be tailored according
-
ceramic membrane electrolytes. The project will span the length scales, from materials discovery, including with computational approaches, through mechanical properties and microstructure optimisation