Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
Science. Explore new possibilities in the study of 2D and 3D magnetic microstructures using a mix of static and dynamic magnetometric methods, as well as advanced static and dynamic magneto-optical domain
-
sera portée aux polymères semi-cristallins, pour lesquels l'évolution de la microstructure au cours de la déformation sera caractérisée. À cette fin, une machine de traction–torsion miniaturisée sera
-
to aeronautical industry. These elements have a significant impact on microstructural evolutions, which need to be studied because these evolutions influence the profiles of microstructures, the mechanical behavior
-
to the viscoelastic behavior of polymeric foams under large deformations dynamic loadings. The objective is to simulate, using the finite element method, the response of these porous microstructures under complex
-
at the Mechanics of Composites for Energy and Mobility Lab. (MCEM, https://composites.kaust.edu.sa ). Field of study A Postdoctoral opening is available in the area of Insitu Multiphysics
-
collaboration with Special Melted Products (https://specialmeltedproducts.com/) using the unique Royce metals processing capabilities in Sheffield (https://sheffield.ac.uk/royce-institute), that range from alloy
-
schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research. We are looking for a Research Fellow to assist the PI in conducting research specified in a sponsored project. The
-
schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research. We are looking for a Research Fellow to assist the PI in conducting research specified in a sponsored project. The
-
framework for the modeling of polymer nanocomposites under nonlinear elasticity at large deformations. The microstructure will be explicitly described at the microscopic scale through nonlinear micromechanics
-
. Aging is associated with changes in both sleep macrostructure (e.g., increased fragmentation, reduced slow-wave sleep) and microstructure (e.g., alterations in slow oscillations, sleep spindles, and REM