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sample preparation equipment (including cross-sections) and also an ability to fabricate prototype devices using electron lithography. The current topics of interest include the process development and
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Advancing the state of the art in measurements of sound, vibration, force, acceleration and velocity
quantification and minimization by optimized statistical and signal processing methods. Additionally, proposals for improvements in dynamical mechanical metrology that do not fit in one of the above topics may be
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current limitations on material validation, which are linked to limitations on post-process nondestructive evaluation (NDE) with conventional methods. This project seeks to develop innovative methods
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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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. Chemical engineers constantly need reliable property data for process design development and optimization. This information is predominantly coming from scientific publications. Thousands of papers
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provide information and insight into biofilm behaviors. This research opportunity involves using advanced imaging techniques coupled with quantitative bioassays to measure variations found within biofilms
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quantum mechanical calculation of the fundamental thermodynamic and transport properties of process gases. We are particularly interested in the development of next-generation standards for measuring flow
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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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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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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