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. Applying these techniques to induced pluripotent stem cell (iPSC) colonies will provide a better understanding of cellular mechanics and efficiency of differentiation, and will allow systematic quantitative
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Robotic Systems for Smart Manufacturing Program is developing the measurement science needed to enable manufacturers to characterize and understand the performance of robotics systems within
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Description Nanomechanical properties are critical for the design of all nanodevices. For example, all nanodevices experience mechanical loads during processing and service, and quantitative predictions
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-film samples on waveguide interfaces and gas phase samples over temperature ranges from 1.7 K to 350 K. The experimental results are modeled using high-level quantum mechanical methods (DFT/MP2/MRCI
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; Electron microscopy; X-ray diffraction; X-ray computed tomography; Mechanical properties; Fatigue; Fracture; Modeling; Atom probe; Microstructure; Processing; Eligibility citizenship Open to U.S. citizens
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employed. This involves the computational determination of 3-D features of a specimen from a series of their 2-D projections. By carefully preparing the specimen, designing the experimental acquisition, and
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analysis; (2) investigating structural stability, large displacement responses, failure mechanisms, and collapse; (3) investigating the effects of coupling between geometric nonlinearity and material
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the rate of fire growth. State-of-the-art fire models designed for these simulations also require input parameters (material properties) that describe: the decomposition reaction mechanism of combustible
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layers, or interfaces in multilayer systems containing polymers. Recent work includes characterization of failure mode and degradation mechanism of polymeric encapsulation materials in photovoltaic modules
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. This opportunity focuses on the development of new device technologies (microfluidic enclosures, environmental control, and imaging capabilities) to manipulate external cues and monitor the feedback mechanisms