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Field
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models of gas transport and process behavior in industrial systems Collaborate with a team of scientists from across the national laboratory complex on modeling efforts Extend process flow modeling across
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duties The main duties involved in a postdoctoral posistion is to conduct research. Teaching may also be included, but up to 20% of working time. The purpose of the position is to develop independence as a
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variations in the electrical conductivity of different compositions during the insulator-to-metal (amorphous-to-crystalline) phase transition via direct heating in a heated chamber fitted with electrical
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reactants; handling air- and moisture-sensitive materials; loading and sealing reactants in suitable containers or crucibles; and conducting high-temperature reactions by arc melting, induction-, tube-, or
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physicists, mathematicians, historians and philosophers to investigate the origins of entropy, randomness, chaos and irreversible behaviour in nature. We are looking for three postdoctoral researchers to join
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Requisition Id 16974 Overview: We are seeking a Postdoctoral Research Associate to conduct Mechanical Behavior of Advanced Structural Alloys by Engineering Diffraction. This position resides in
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Max Planck Institute for Plasma Physics (Garching), Garching | Garching an der Alz, Bayern | Germany | 2 months ago
, sustainable and nearly limitless - just like the sun. Fusion power plants have the potential to play an important role in supplying energy to future generations. At the IPP site in Garching we are conducting
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will primarily focus on utilizing and advancing capabilities with the laser heating system at beamline 16-ID-B, complemented by monochromatic and white-beam Laue multi-grain measurements at 16-BM-D
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-friendly electrical steel coatings. Integrating CVD process and heat treatment of eco-friendly electrical steel coatings. Study the heat treatability of oxide coated electrical steel. Investigate
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: Conduct research and develop next-generation CFD methods (with finite volume and finite element techniques) and models for a variety of nuclear energy systems, using world-leading high-performance computing