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in the downhole. Characterize the Alloy for understanding the sealing mechanism. Test the alloy at rigorous conditions like high temperatures close to 200-300 °C. Field implementation: the prepared
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for high-performance infrared photodetectors and imaging systems. We invite applications for two postdoctoral positions focused on next-generation SWIR and room-temperature MWIR photodetectors based on III–V
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PbS materials for high-performance infrared photodetectors and imaging systems. We invite applications for two postdoctoral positions focused on next-generation SWIR and room-temperature MWIR
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operation and failure conditions, including thermal runaway initiation and propagation. · Analyze coupled failure mechanisms involving heat generation, gas evolution, internal shorting, and structural
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platform in the field of testing composite materials for in-situ testing in conditions relevant to the energy sector (high pressure, high temperature, extreme environments). Participate in the generation
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sensors for strain, temperature, and chemical sensing. These sensors will be based on our transmission line concepts that ensure super high gauge factor sensors integrated with passive wireless sensing