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. The uncertainty of conventional fire measurements can be large due to the practical assumptions used to develop the measurements. State-of-the-art measurement technology is available to provide independent
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, since every nanoparticle produced is not identical, it also utilizes new techniques like First Order Reversal Curves (FORC) to characterize the distributions in these properties. A variety of experimental
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interactions with the electrolyte as a function of applied potential. Despite more than a century of model development, much is still unknown about even single-crystal interfaces. We combine spectroscopic and
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Characterization and Testing (FACT). The new facility is furnished with several instruments for characterizing pore architecture and evaluating fundamental sorption properties of materials upon exposure to single
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. A key component of the project is high sensitivity magnetic scanning microscopy of these nano-objects, most likely using SQUID magnetometers. We are seeking a postdoc with background in scanning
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variables. Computer-controlled equipment is available for alternating-current magnetic-susceptibility measurements as a function of frequency, temperature, and magnetic field. An automated vibrating sample
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spectrum. With the march to higher frequencies, there is a growing clamor that conventional materials and characterization techniques are not up to the challenge. For example, commercial tunable dielectrics
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and Faller. A pair of field masses translate adjacent to a pendulum bob, thereby displacing the bob in accord with the change in the gravitational field. The displacement is read-out using Fabry-Perot
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. The mechanisms by which cells transition from pluripotent to differentiated states is incompletely understood, and correlating measurable parameters to identify efficient culture conditions and release criteria
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to understand dynamic changes within microbiomes or to design interventions (e.g., modeling algal blooms, improving human health or crop yields, bioremediation). This project seeks is to develop measurement