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Kucerka N, Oosten B, Pan J, Heverle F, Harroun T, Katsaras J, "Molecular Structures of Fluid Phosphatidylethanolamine Bilayers Obtained from Simulation-to-Experiment Comparisons and Experimental Scattering Density Profiles," The Journal of Physical Chemistry B 119 5), 1947-1956 (2014).
Kucerka N, Oosten B, Pan J, Heverle F, Harroun T, Katsaras J, "Molecular Structures of Fluid Phosphatidylethanolamine Bilayers Obtained from Simulation-to-Experiment Comparisons and Experimental Scattering Density Profiles," The Journal of Physical Chemistry B 119 5), 1947-1956 (2015).
This curve carries the information on how effective certain collision angles are registered by the experiment and image analysis methods, and can be used to correct the scattering intensity distribution that is derived from a given experimental scattering image.
The sensitivity of the scattering peaks as markers for domain stacking is shown in Figs. S7 by a comparison of experimental scattering for the CoPi, CoMPi and CoBi OEC to calculated scattering curves using the reference model 1 monolayer, bilayer, trilayer domains, but applied to CoOOH and LiCoOO mineral structures.
In this procedure, the experimental scattering patterns were corrected for solvent, container and instrument background scatterings, X-ray polarization, sample absorption and Compton scattering to yield the total scattering for the solute, I q).
The theoretical scattering profiles (solid lines: PvRBP2b 3E9, blue; PvRBP2b 4F7, red; PvRBP2b 6H1, green; PvRBP2b 10B12, yellow) calculated from the crystal structures were fitted to the experimental scattering data using CRYSOL.
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Within experimental scatter, there is a good agreement between the numerical predictions and experimental measurements.
Stress ratio effects on experimental scatter and crack growth rates are quantified and discussed.
The focus is on experimental scatter (in-laboratory and inter-laboratory) and on schemes for quantitative data analysis.
These values are somewhat sensitive to the experimental scatter and/or error commonly seen in instrumented indentation.
Within experimental scatter, predicted fatigue behavior at any given (a) frequency and (b) load ratio is confirmed to be in reasonable agreement with the experimental measurements.
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