Journal Club for April 2023: Material Testing 2.0
Prof. Fabrice Pierron
University of Southampton, UK
MatchID NV, Ghent, Belgium
Prof. Fabrice Pierron
University of Southampton, UK
MatchID NV, Ghent, Belgium
Dear all,
A master position is open at University of Technology of Belfort-MontBéliard in France. The master projet is essentially focused on the modeling of the interaction between the laser and metals in order to predict surface morphology.
The modeling has to account for the different physical phenomenon involved during the interaction. Therefore, comparison between experimental database and numerical results is expected.
I am looking for a enthusiastic Student or Postdoc who would like to enhance his/her knowledge in the field of computational mechanics. The focus in this three-year research project is about IGA simulation of flow diverters in patient-specific blood vessels considering fluid-structure interactions.
Further information can be found via: https://ovgu.b-ite.careers/jobposting/1098cbc0c83ef975dcf42053802eb719a…
PhD and Postdoc Positions in Computational Modeling in Biomechanics Lab at Medical College of Wisconsin
Multiple postdoc and one PhD positions are open at Tsinghua University to develop a high-performance numerical tool for simulation of submarine landslides and subsequent geophysical flows, such as submarine debris flows and density currents. The research will take place at Tsinghua University’s Shenzhen International Graduate School (SIGS), located in Shenzhen, China, and is partly sponsored by NSFC and Tsinghua SIGS’s scientific research startup funds.
The Computational Biomechanics Lab (PI: Dr. Lik Chuan Lee) in Michigan State University has openings for postdocs and PhD students.
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Salah Naili
job
#job #phd #Computational mechanics #Ultrasound imaging #Reduced-order model
#Machine Learning
There is an opening for a funded PhD in mechanical engineering at the
Université-Est Créteil Val de Marne (UPEC) starting September 2023, under the
supervision of Pr. Salah Naili. This will involve to develop and validate a
mechanical model and numerical methods allowing to describe the interaction
between the ultrasonic wave field and a rough surface of an implant.
See below for a more detailed description of the project.