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geochemistry, and analytical instrumentation (including XRF, X ray imaging, Micro CT, SEM, LA ICP MS, TQ ICP MS, and microprobe), offering extensive opportunities for training, skills development, and
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. Working closely with Professor Gregory Warr and his team, the successful candidate will have experience in the design, execution and analysis of neutron and X-ray small-angle scattering experiments
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optical engineering: Imaging and image analysis, optical engineering, detector development, microscopy, X-ray optics • Structural Biology and Mechanical Engineering: Automation, high-precision mechanics
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including radiologists, radiographers, clinicians, public health researchers and health professionals medical imaging modalities such as MRI, Digital Mammography, Digital Breast Tomosynthesis, PET, CT, X-ray
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. Strong spectroscopy expertise, including experience with techniques such as photoluminescence, Raman spectroscopy, and X-ray photoelectron spectroscopy. 2. Experience with synthesized or naturally
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, confocal imaging, live animal IVIS and CT-PET machines, X-ray radiation, XCELLigence, Seahorse, ultracentrifuge, Proteomics (Mass spectra), HPLC, etc Conducts background research, independently design
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nanomaterials characterization • Hands-on experience with one or more advanced characterization techniques, ideally including atomic force microscopy, ellipsometry, infrared or Raman spectroscopy, light and X-ray
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: Design and implement ML, deep learning, and Large Language Models for orthopaedic applications Work with multimodal clinical data, including: Medical imaging (X-ray, CT, MRI) Electronic health records (HER
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the nonlinear Hall effect, could potentially explain the observed experimental OR current. Using experimental probes such as x-ray and other material analysis techniques, imaging, probe-based microscopy, visible
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Center for Devices and Radiological Health (CDRH) | Southern Md Facility, Maryland | United States | about 16 hours ago
systems integration, real-time imaging technologies, and performance validation protocols. Participants will learn optical and x-ray system calibration, mixed-reality hardware integration, and evaluation