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to consider multidimensional landscapes. The goal of this research project is to develop models that can be used to evaluate the stability and predict transitions as cell populations progress from pluripotent
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parallel, low-cost analysis systems that do not rely on optical or aptamer-based labels. Before such systems can be realized, the electromagnetic response of biochemical samples must be understood in detail
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the researcher a unique opportunity to develop and test novel dosimetry systems for quantification of patient dose in radiotherapy, or dose delivered to products in industrial electron beam processing
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phone Tracey B Schock tracey.schock@nist.gov 843.460.9944 Description Metabolomics and Lipidomics are emerging fields in systems biology that are complementary to the other -omics sciences. By integrating
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Description The translation of a mass spectrum into a chemical identification is often a very imprecise and error prone part of the rapidly expanding fields of mass spectrometry-based proteomics and
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the optical, mechanical, and electrical systems used in these experiments are welcome, and research projects can be formulated across a tremendous breadth of precision measurement activities. key words Watt
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frequency collective motions of biomolecular systems. These collective modes characterize the incipient motions for the large-scale conformational changes along the torsional coordinates responsible
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of the difficulty of producing membrane protein crystals of the quality required for high-resolution x-ray or neutron diffraction studies. Numerous approaches involving surfactant-based systems exploiting
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particular, grating MOTs of diverse species like Li, Sr, or even molecules offer paths toward making new sensors. Our motivation is making a cold-atom based vacuum standard (CAVS) that also doubles as a vacuum
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transmission electron microscopy (TEM) and in situ atomic force microscopy (AFM) studies of how these slip structures evolve on pure Al single crystals and follow-up work on Cu is underway. Such studies provide