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Field
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: Education: PhD on Materials Science, Chemistry, Biotechnology, or related disciplines Knowledge: High level in English Professional Experience: Demonstrable previous experience in materials science
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of large and multidimensional datasets High Performance Computing (HPC) Low temperature physics High magnetic field physics Synchrotron and neutron facilities X-ray scattering Compensation and Additional
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sample material below and above the Taconic unconformity, related to the Hirnantian glaciation that was covering Africa/Gondwana during the Ordovician. The success of the project relies on existing
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, cold chain logistics, and sustainable packaging systems, addressing critical challenges in product protection, supply chain optimization, and distribution system efficiency. We seek a highly motivated
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models for high-temperature structural materials with applications in nuclear reactors and other energy systems. The candidate will collaborate with ANL staff to review, validate, and enhance methods
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industry, to make the luminescent materials. Targeted materials are Yb³⁺-doped inorganic semiconducting sulphide materials, emitting in the infra-red spectral range, where silicon solar cells have high
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kinetics, and high-temperature radiation transfer is highly desired. Experience in studying material reactivity at high temperature using TGA/DSC or mass spectrometer is highly desired. Experience in
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, where silicon solar cells have high conversion efficiency. To successfully develop new luminescent absorber materials, it is crucial that you gain a fundamental understanding of the physical processes
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scalable, cost-effective processes to efficiently remove atmospheric CO2. High-temperature ammonia separation: Creating novel high temperature separation technologies to make ammonia synthesis significantly
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Development and Manufacturing (intelligent composites, high-temperature composites, hybrid composite manufacturing, design of metamaterials, and/or non-destructive structural health monitoring and performance