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Field
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bench scale micro-computed tomography and ultrasonic sensing methods to evaluate the state of charge and state of health of iron- and lead-based electrodes. Your research will be complemented by studies
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with large-volume data management. Experience with seismic imaging or source characterization methods (e.g., ambient-noise interferometry, travel-time tomography, waveform modeling). FLSA Exempt Full
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scientific programming in Python and experience with GPU processing of large-scale datasets. Experience with inverse problems and 3D reconstruction methods for tomography, laminography, or a closely related
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, engineering, computer science, or a related field. Experience with inverse problems and 3D reconstruction methods for tomography, laminography, or a closely related modality. Strong scientific programming in
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methodologies to support interdisciplinary cancer research programs, including magnetic resonance imaging (MRI), optical imaging, micro-computed tomography (micro-CT), photoacoustic imaging, and image analysis
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Optical Coherence Tomography design and instrumentation. The goal of the project is to design and develop novel swept source and spectral domain OCT systems enhanced by ultrasound for structural and
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not ready for non-expert users. The goal of the project is to develop both the previously demonstrated X-ray microscope mode and the holo-tomography mode. This includes developments of software
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Job description We seek a highly motivated postdoctoral researcher to develop and apply integrated workflows for in situ cryogenic electron tomography (cryo-ET). The project will focus on automating
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(pooled and/or arrayed) Virology (especially DNA viruses) Mammalian gene regulation Chromatin structure and function DNA replication and/or repair Cryo-Electron Tomography Applicants should hold (or be
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-chemical systems using advanced in situ approaches, both under gas and liquid environments, as well as three-dimensional reconstruction through electron tomography. The experimental platform is equipped with