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within the project, in close collaboration with partners responsible for morphological and structural analyses. The objective is to establish correlations between growth conditions, microstructure, and
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of confining interface modes. Through high-resolution Brillouin scattering and coherent acoustic phonon generation experiments, we will study the dynamical behavior of microstructured systems. We propose
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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proposed to estimate the robustness of these predictive tools. On a more fundamental level, the role of the microstructure and/or biochemical composition of the different phases on the mechanical behaviour
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-chemical and microstructural approach); Present results at meetings to the laboratory's technical team (LaSIE) and the project manager (Andra). Type of recruitment Category: A Placement: La Rochelle
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: Initially 1 year, renewable. Appointment Start Date: As early as February 2026, but flexible Group or Departmental Website: https://med.stanford.edu/bridge-lab.html (link is external) How to Submit
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surface structures and microstructures using various spectroscopic and microscopic techniques including but not limited to SEM, XRD, TEM, XPS. • Evaluate the gas sensing properties and performance
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Tasks and Job Description • Development of a research concept for implementing computational methods in welding and additive manufacturing to design new alloys and determine microstructures and properties