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to assess device performance, including timing jitter, dark count rate, detection efficiency, and resonator quality factors Rapidly refine fabrication processes and readout circuit designs based on device
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research on advanced nanomaterials for polymer, metal, and ceramic composite systems. The successful candidate will develop scalable processing approaches for incorporating one-dimensional (1D) and two
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for next-generation information processing, microelectronics, wireless communication, and quantum information science. Key Responsibilities: Develop terahertz coplanar resonators, including design
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micro-CT, ultrasonic methods, and x-ray-based characterization Contribute to hardware and software development for experimental platforms Process, interpret, and manage large datasets Present research
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for accelerator operation. Position Requirements PhD completed in the past 5 years or soon-to-be completed in accelerator physics or a related field is strongly preferred. PhD graduates in other branches
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. The selected candidate will develop computational models at the mesoscale and/or macroscale based on the principles of mass, momentum, and energy conservation to describe processes such as morphological change
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, and measurement Experience with superconducting qubits Experience with dilution refrigerator operation and cryogenic experiments Application Materials Please upload the following materials as
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The Chemical and Fuel Cycle Technologies division is seeking a Postdoctoral Appointee to join a multidisciplinary team developing electrochemical reactions and processes in molten salt electrolytes
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of advanced bioleaching processes for recovery of critical minerals from secondary materials The candidate will design and execute experiments; operate, monitor, and troubleshoot bench- and pilot-scale
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on chemical recycling processes and organometallic catalysis Perform mechanistic studies using reaction kinetics analysis and related physical organic and inorganic techniques Collaborate effectively within a