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which is not only for its function study but also for cancer biomarker development, is highly desired. Potential projects could include the development and application of new methods for DNA methylation
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301.975.3792 Description Post-doctoral positions are available to advance materials, methods, and instrumentation for electron paramagnetic resonance (EPR) spectroscopy measurements of nanomaterials and
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process via cell banks, raw materials, or the environment. These adventitious agents can potentially cause harm to recipients. Current testing methods are very time consuming and may not detect all types
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in magnetic resonance imaging (MRI), hyperthermia for cancer and arthritis treatment, and drug delivery. However, the fundamental characterization methods for magnetic nanoparticles-both individually
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pushed the limits of mass detection to spectral resolutions over 100,000, allowing for specific mass determination and unknown compound identification. Analytical methods and novel data-processing tools
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tools including (but not limited to) x-ray and ultraviolet photoemission, scanning probe microscopies, mass spectrometry, fluorescence and other optical methods, and local electronic transport
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measure structural changes as the agents go from their biologically active to their biologically inactive forms. As analytical methods become available, studies of the physical and chemical processes
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structure-mechanical property relationships are needed to enable diverse applications of these materials. There is a need for quantitative measurement methods to study the interfacial properties of the filler
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301.975.5473 Description Molecular diagnostics are a crucial part of personalized medicine. Molecular diagnostic methods such as PCR, qPCR, RT-PCR and Next-Generation Sequencing (NGS) can be used to detect
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and tracking systems based on the international standard ISO/IEC 18305. We are interested in hybrid localization methods for solving this challenging problem using a variety of sensors and technologies