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Develop and validate material models and performance predictions using simulation tools Integrate materials into injection moulding and extrusion processes through prototyping Collaborate with
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1,400 students (including 250 foreign students) and 380 staff members. The school has three high-level scientific and technological research and teaching centers working in the fields of materials and
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aims to understand the smoldering fire behavior, its propagation within the material and the influencing parameters. These tests will allow to validate the model developed. Influence of smoldering
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practical skills in numerical modelling. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR5510-PETGRI-001/Default.aspx Work Location(s) Number of offers available1Company
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School graduates over a thousand students who are ready to take on great ambitions and challenges. For more details, please view: https://www.ntu.edu.sg/eee We are looking for a Research Associate to
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of at least 8 publications within the last five years in the field of modeling and development of thermoelectric materials and devices, published in journals with an Impact Factor and included on the Polish
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the mechanical behavior of these materials at the nanoscale. Subsequently, a molecular dynamics model will be developed to simulate the matrix–nanotube interaction, analyzing the effects of adhesion, orientation
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of turbulence with fast-ions, sawteeth, and MHD. Will participate in validation and integrated modeling efforts in the AUG program. Will be expected to make original research contributions to the AUG program
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French National Research Institute for Agriculture, Food, and the Environment (INRAE) | Montpellier, Languedoc Roussillon | France | 34 minutes ago
their benefits of use versus their environmental impacts. 2. You will integrate this knowledge about the materials into a global ecodesign strategy for food packaging materials with the related models and decision
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subsidiarity at the territorial scale," specifically through the "materials for energy storage" program. Using molecular modeling tools, the objective is to participate in the design of a single catalyst capable