Sort by
Refine Your Search
-
more complex for CR-PFM than quasi-static PFM. Our project is aimed at establishing CR-PFM as a technique for quantitative imaging of bias-induced strain, and for measuring frequency dependent responses
-
), which makes programmatic querying of labeled data possible through the app’s REST API. Datasets include (but not limited to): 1D spectroscopy (EDS, EELS, CL), 2D images and diffraction, 3D to 4D
-
of hormones in biological matrices. Hormones are essential for major developmental and reproductive processes. Because hormones are highly similar in structure and found at nanomolar concentrations
-
. Applications will include benchmarking, verification, and error analysis of magnetic resonance imaging simulators and electromagnetic scattering codes. References Vico F, Gimbutas Z, et al: IEEE Transactions
-
of organisms that ingest plastic debris. Chemical instrumentation for these studies include Fourier-transform infrared (FT-IR) spectroscopy, differential scanning calorimetry, Imaging micro-FT-IR, X-ray
-
of the non-classical light from a single solid-state quantum emitter, Physical Review Letters 109: 163601, 2012 O'Neill K, Lyons SK, Gallagher WM, Curran KM, Annette T. Byrne AT: Bioluminescent imaging: a
-
properties such as electron-based spectroscopies, nanometer-scale imaging with energy filtering using a photoemission electron microscope (PEEM), and other optical measurements. Research is done in close
-
over time. Stem cell populations can be highly heterogeneous and can exhibit complex responses. Using quantitative imaging data on large numbers of live cells over time, we can construct potential
-
crime scene. Current automated ballistics identification systems are primarily based on image comparisons using optical microscopy. The correlation accuracy depends on image quality, which is largely
-
phases. This research will integrate a variety of modeling tools across multiple time and length scales to predict the microstructure evolution during the AM build process and post build thermal