Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
professors and the focus areas are polymer-composites, natural and sustainable polymeric materials, characterization, adhesive joints, and finite element simulations. We appreciate individuals interested in
-
Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | about 2 months ago
-/nanoindentation and complementary imaging techniques (e.g. AFM) # Hands-on experience in the numerical modeling of mechanical material properties, e.g., finite element simulation, crystal plasticity modeling
-
-moment tensor inversion for low-magnitude induced events in geothermal projects, focusing on the volumetric component of the moment tensor and linking this, quantitatively, to the behaviour expected from
-
material systems knowledge of numerical methods used in materials modeling (e.g., finite difference methods, finite element methods) ability to perform computer simulations of liquids and liquid crystals
-
FEMTO-ST Institute/AS2M (https://www.femto-st.fr/en) | Ons en Bray, Picardie | France | 3 months ago
manufacturing (micromachining); familiar with Matlab, Python or C++, CAD software and Finite Element Methods. He/she will be registered within Doctoral School of Robotics, Doctoral school SPIM, UMLP with Prof
-
to the design and delivery of teaching and assessment in higher education or other relevant environments F3 Practical experience with Finite element software (Abaqus and FEniCS) Terms and Conditions Salary will
-
. Reconstructing, forward modeling, or inverse modeling of diffraction data. High-performance computing and scalable scientific software development. Molecular dynamics, crystal plasticity, finite-element, or other
-
Degree or equivalent Skills/Qualifications Strong programming skills in Python, Fortran or similar scientific programming languages are required. Experience with finite-element modelling and high
-
adopt and extend in-house homogenized constrained-mixture (finite element) models for cardiovascular tissues towards simulating cartilage G&R (see Cyron et al., 2016 ). You will then simulate cartilage
-
data, a physics-based train–track–embankment interaction model will be developed using finite element (FE) and/or multibody dynamics (MBD) approaches. The model will be used to investigate the mechanisms