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their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
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-dimensional documentation and recording of archaeological materials and structures using high-precision 3D scanners and in processing digital models. • Track record of scientific publications in prehistoric
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an integrated field and numerical modeling approach. Your tasks are to: - reprocess and jointly model the available regional magnetotelluric (MT), gravity and magnetic data to develop an initial model
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reporter cell lines, designing target-engagement and mechanism-of-action assays, and establishing preclinical tumor models to evaluate candidate compounds and inform the development of new therapeutic leads
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology
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animation, 3D modeling) for humanoid applications Publish research findings in top-tier conferences and journals (e.g., SIGGRAPH, CoRL, ICRA, RSS) Assist in supervising graduate and undergraduate students
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. Responsibilities will include electromagnetic simulation and modeling, RF coil development and fabrication, 3D design and printing of mechanical components, laboratory testing, and evaluation of prototype systems
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology
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National Laboratory to accelerate materials discovery by integrating advanced 3D X-ray diffraction experiments, mechanistic modeling, and artificial intelligence. A powerful set of high-resolution 3D X-ray
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related field by the start date. Strong background in atmospheric/air quality modeling with 3D chemical transport models (e.g., CMAQ, CAMx, WRF-Chem, GEOS-Chem). Experience working in high-performance