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and aspheric optical surfaces are revolutionizing telescope design by enabling wide field imaging in compact packages. The advantages for potential Astrophysics science missions are telescopes and
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gallium nitride MEMS technology. In this specific project the postdoc will help with developing a thermal infrared imaging micro-instruments working at 500C using GaN based acoustic and micromechanical
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, fine-tuning, and retrieval-augmented approaches, to enable natural language interaction with visual and clinical data Developing scalable annotation, preprocessing, and augmentation pipelines for image
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propagation and/or imaging in complex battlefield environments. As signals propagate through the environment, they undergo effects due to atmospheric turbulence, atmospheric gradients, terrain, and other
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system. Hardware-in-the loop (HIL) is used to study prototype CASs, developmental control algorithms, and their ability to provide the required maneuvers throughout the flight envelope. Coupled CFD/RBD
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foundational research laboratory. In this specific project, the postdoctoral researchers will have a unique opportunity to research advanced optical imaging and infrared beam shaping/structuring technologies
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associated performance predictions will be established to represent the full potential of morphing technology given a fully custom design. The result will provide an experimentally characterized prototype