Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
on imaging concepts, knowledge of Matlab, Python programming languages and commercial software based on the finite element method is a plus, excellent communication skills (written and oral) in English. A very
-
should have a good knowledge of scientific programming (e.g., Python, C, Fortran) and finite-element or finite-difference schemes. It will be an asset if the candidate has prior research experience in
-
design, including cable-driven or compliant mechanisms. Experience in robot or multibody simulation software, such as Simscape Multibody, Gazebo, Webots, or CoppeliaSim. Knowledge of Finite Element (FE
-
%) Maintenance and management of research equipment and student labs (5%) Computational modeling, finite element analysis, & numerical simulations (5%) Laboratory testing and scientific measurements, as needed (3
-
-specific digital twin of the face: finite element modeling and multiscale active behavior of facial muscles from multimodal data. The objective of this PhD project is to develop a patient-specific digital
-
stresses near the surface. Research and development activity is ongoing to apply carburizing to steel grades richer in alloying elements (Mo, V, Cr…), for applications at higher temperature dedicated
-
failure modes of electrical machines and their effects on vibration behavior are simulated. To this end, you will first adapt existing finite element models (FE) to represent mechanical faults. You will
-
Albert-Ludwigs Universität Freiburg | Freiburg im Breisgau, Baden W rttemberg | Germany | 20 days ago
strong interest in bridging experimental mechanics and numerical simulation. Prior exposure to dynamic or impact testing, composite materials, image or tomography analysis, the finite element method
-
Strong background in biomechanics, biomedical engineering, computational mechanics, or equivalent fields. Strong foundation in numerical methods, especially the finite element method. Proficient in python
-
combine ultrafast pump–push–probe experiments with sub-10 fs resolution, finite-element simulations, and quantum models extending the Tavis–Cummings Hamiltonian. The aim is to demonstrate coherent control