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measurement techniques and models for the thermophysical and interfacial properties of process streams; and the application of dielectric acoustic techniques to determine the thermophysical properties
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NIST only participates in the February and August reviews. Metals-based additive manufacturing (AM) processes, or metals 3D printing, such as laser powder bed fusion and directed energy deposition
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to this process is the understanding of phase relations, phase transitions, processing-structure, and structure-property relationships. Equally important to the modeling efforts are the experimental
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for critical applications that require qualification and certification—increasingly require that computational models and in-situ monitoring of such processes be experimentally validated under highly controlled
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signals design and processing, and mutlitmodal sensing. The project welcomes expertise in robotics, serial communication protocols and microprocessors, signal processing, and finite element modeling, and
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the melting point and mechanical deformation due to powder densification and compliance to a (cold) build plate. These processes give rise to material microstructures quite unlike wrought materials and that
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inorganic and organic mass spectrometries (MS), implementing multi-use sample processing streams and developing novel chromatographic-MS and solid sampling-MS instrumental couplings to comprehensively
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processes over such an extended time range is a formidable task for conventional molecular dynamics. We have developed a mathematical technique for simulation of phonon transport in nanomaterials based
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words Bioinformatics; Biostatistics; Gene expression; High throughput sequencing; Micro RNA; Microfluidics; Molecular biology; Multiplexed bioassays; Next generation sequencing; Eligibility citizenship
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. Chemical engineers constantly need reliable property data for process design development and optimization. This information is predominantly coming from scientific publications. Thousands of papers