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The successful candidate will be responsible for: 1. Develop the numerical and analytical tools required to design these tunable random architectures and predict the mechanical behavior
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Job Description Are you intrigued by the many fascinating properties and advanced uses of polymers and elastomers? Are you looking to establish yourself as a scientist? The Materials Mechanics
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the mechanical behavior of interfaces through local micro-shear testing. Your role As part of the Thermo-Chemomechanics and Interfaces Group, your key responsibilities will include: Advanced micro-/nano
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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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Position Summary Dr. Amargant-Riera’s research laboratory focuses on understanding the mechanisms that define oocyte quality. The lab uses mouse models and human samples to investigate
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curious to deliver work that matters, your journey starts here! Innovation. Interdisciplinary collaboration. Complex problem solving. In Carnegie Mellon University’s Department of Mechanical Engineering
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such as cobalt and rare earth elements from dilute sources. The successful candidate will be responsible for applying advanced quantum mechanical methods to model metal–peptide binding interactions, guide
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curious to deliver work that matters, your journey starts here! Innovation. Interdisciplinary collaboration. Complex problem solving. In Carnegie Mellon University’s Department of Mechanical Engineering
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: - electrochemical impedance spectroscopy; • fundamental materials science, including: - Mechanical and microstructural characterisation of ceramics You should have significant experience
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: Durham, North Carolina 27701, United States of America [map ] Subject Area: Engineering / Civil and Environmental Engineering Appl Deadline: filled (posted 2025/07/31, listed until 2025/08/08) Position