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National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 17 days ago
relationships of such aerospace materials as metals, intermetallics, ceramics, polymers, nano-structural, materials, bio-materials, composites and coatings. Examples of the work will vary depending on each
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, fellow anthropologists and sustainability experts on structural power composites (SPCs). These transformative materials can do two things at once: store electrical energy whilst carrying mechanical loads
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of high-performance biobased and recyclable polymer and composite materials for applications such as spacecraft structures, insulation, lightweight components, and other space-related systems. The research
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within a multidisciplinary team of electrochemists, material scientists, composite engineers, fellow anthropologists and sustainability experts on structural power composites (SPCs). These transformative
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composites. In this role, you will conduct high-impact research, publish in leading journals, present findings at conferences, and collaborate with a dynamic team of faculty and students. You will also have
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, polymer matrix ceramic composites, ceramic matrix composites, and advanced coating systems for a variety of applications in the aerospace, defense, nuclear, and microelectronic industries. Develop standard
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understanding of the interrelations between air quality, climate change, and human health, with expertise in atmospheric composition modeling, air quality forecasting, satellite-based PM2.5 estimation, and
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of polymers and composites used in civil infrastructure, with an emphasis on understanding and modeling the effects of moisture, temperature, and environmental exposure on material performance and service life
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. The successful applicant will work within a multidisciplinary team of electrochemists, material scientists, composite engineers, fellow anthropologists and sustainability experts on structural power composites