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of induced gamma ray emissions during thermal and cold neutron beam irradiation. Nondestructive methods such as Prompt Gamma Activation Analysis (PGAA) are well suited for multi-elemental analysis for bulk
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Description Molecular modeling (i.e., Monte Carlo and molecular dynamics methods) are becoming computationally-accessible for large-scale simulations of various thermophysical and mechanical properties
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crystallography and spectroscopy are fundamental and imperative in the investigation and development of condensed matter sciences. We will widely use these methods to study the crystal structures of novel materials
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manufactured alloys and components in room-temperature aqueous environments. Experimental methods include slow-strain-rate tensile testing with simultaneous electrochemical studies, polarization resistance
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, Noise characteristics of thermistors: Measurement methods and results of selected device, Rev. Sci. Instr. 88, 024707 (2017). John Lehman, Andreas Steiger, Nathan Tomlin, Malcolm White, Mathias Kehrt
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) to develop new imaging and metrological capabilities for studying nanoscale electronic properties. In particular, we are interested in combining time-resolved optical techniques with our microwave methods
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approval, we seek to develop methods to measure local stress states in benchmark constriction-flow geometries that lead to blood damage. For example, we seek improvements in flow-field imaging, flow
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may consist of components that are chemically very dissimilar. We are exploring new approaches in measurements and modeling to meet these challenges. Rapid experimental methods are applied
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end products of the microbiome (and its host/environment depending on the method). Metaproteomics is the attempt to characterize the proteome of a community of microorganisms using mass spectrometry
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(higher-order structure MS methods, top down sequencing, peptide mapping, glycoanalysis, PTM’s, size/charge heterogeneity), stability and associated phenomena (aggregation, accelerated stability, etc.), and