Sort by
Refine Your Search
-
potential to become an important component in structural studies of bio-macromolecules. The main reason for its attractiveness lies in the possibility of using these data to quickly distinguish between
-
stability over a broad timescale (0.1-100 s) for the first time; and, most recently, improved the timescale of sub-pN precision of AFM by another factor of 50. We are currently applying these improvements
-
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
-
performance modeling capabilities that simultaneously consider multiple performance aspects, robust IAQ and other performance metrics, and measurement methods, sensors, and data to evaluate and verify building
-
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
-
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
-
shown that these structures are almost purely radiatively broadened at 9 K. We are soliciting proposals to extend this experimental method to investigate multi-exciton and charged exciton complexes. We
-
chemicals. While neutron and X-ray scattering methods are workhorse techniques for characterizing model formulations, the large number of components in many real products makes mapping the high-dimensional
-
monoclonal antibodies. References Arbogast LW, et al: 2D 1 HN , 15 N Correlated NMR Methods at Natural Abundance for Obtaining Structural Maps and Statistical Comparability of Monoclonal Antibodies
-
, inductively coupled plasma mass spectrometry, and resonant x-ray scattering. key words critical materials; critical minerals; rare earth elements; membrane; sorbent; separation science; e-waste; measurement