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Field
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: Design and conduct advanced high-pressure, high-temperature (HPHT) injection, and microscale huff-and-puff experiments to evaluate CO2, gas, and chemical EOR performance. Interface & Fluid Characterization
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and appropriate manufacturing techniques, as well as the application of innovative and compact heat exchangers. Full attention will also be given to the development of a representative prototype, carry
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, which supports the launch of 2-3 nuclear powered demonstration ships in the early 2030s. Within the SAINT project, you will work in Work Package 3 – From heat to propulsion. The shipping industry accounts
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workflow combines atomic lattice localization, quantitative descriptor extraction, and supervised classification to identify defects with high accuracy and robustness under varying imaging conditions. The
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conferences. Designing and fabricating detailed heat trapping and thermal management materials and stacks of materials, using infrared (IR) management principles (radiation physics and resonant nanoparticles
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, control of exoskeletons, PFOS exposure and menopause, noise measurements and hearing loss, extreme heat and emergency preparedness, air monitoring instrumentation and applications, community-based research
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. Ability to perform manual work outdoors in a harsh environment, e.g. dirt, mud, rain, insects, heat and cold. Must be able to drive a pickup truck and boat. Must have excellent speaking and written
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environmental systems, heat transfer, fluid flow, thermal systems, or building-energy performance. • Low-carbon materials, concrete, biomaterials, or material characterization. • Sensors, environmental monitoring