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develop processes for the purification of hydrogen obtained from diol-based carrier molecules and to evaluate possibilities for the use of electrochemical compression processes. In this PostDoc position you
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focus lies on a complementary approach of compression testing and high-pressure torsion deformation. The experiments are performed on hydrogen pre-charged, nanostructured metals and require analysis
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-agent AI, cooperative vision, and compression protocols so fleets of intelligent machines can perceive the world—robustly, efficiently, and in a trustworthy manner—even when individual sensors fail
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. Experience of designing and carrying out empirical research with practitioners and/or victims. Flexible working We are open to discussions about flexible working. Whether it’s a part time, compressed hours
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models for compressible hypersonic flows; implementing new models and numerical schemes into larger, existing hypersonic CFD codebases; performing verification & validation studies for the new models
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) to evaluate thermal stability and decomposition behavior, porosimetry to assess density and pore distribution, Mechanical testing (e.g., flexural strength, interlaminar shear, compressive strength) and thermal
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harmonic generation. The project involves pulse compression in a multipass cell, pulse shaping in both time and frequency domains, beam shaping using spatial light modulators (SLMs), and generation of new
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plates exposed to various mechanical loads (e.g., compression, tension, bending, twisting). Imaging the mycelial network and using fluorescence microscopy to investigate material distribution. Developing
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, compression and tensile testing. Experience in writing competitive proposals. Cell Culture: Human Mesenchymal Stem Cells. Programming skills (e.g., COMSOL, MATLAB, AutoCAD, etc.). Knowledge, Skills and
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sophisticated experimental campaigns to investigate the mechanical behavior of various materials under diverse loading conditions (e.g., tension, compression, shear, fatigue, impact, high temperature). Develop