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A new diffraction approach examining a thin water film as it freezes and melts reveals the formation and destruction of ice crystallites.
Since transmission electron cryomicroscopes are available in many laboratories, whereas there are only a handful of XFELs in the world, one possible application of the electron diffraction approach pioneered by the Janelia Farm team would be to pre-screen samples so that only the most promising are investigated further at XFEL facilities.
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Specific examples are taken in the area of zeolites to illustrate the use of energy minimizations and (N, V, T) Monte Carlo techniques as a complement to experimental diffraction approaches, typically for the disordered placement of extra-framework species (cations, water molecules).
The evolution of the crystalline structure and surface morphology was analyzed by scanning electron microscopy, Raman spectra and X-ray diffraction approaches.
Although some constraints are imposed on the LCOS pattern by electric field bleed-through from pixel to pixel and by diffraction, this approach affords great flexibility to adapt the setup to different experimental situations.
The angle obtained from diffraction diagram approaches 34.5°.
Super-resolution imaging by single-molecule localization (localization microscopy) provides the ability to unravel the structural organization of cells and the composition of biomolecular assemblies at a spatial resolution that is well below the diffraction limit approaching virtually molecular resolution.
Nonetheless, because the wave character of light is generally ignored in this approach, diffraction of light is not included in MC models and the simulation of the diffraction-limited focal volume is intrinsically problematic.
Skinner, L. B. et al. Joint diffraction and modeling approach to the structure of liquid alumina.
A possibility to approach diffraction limited brightness is demonstrated.
Leslie, A. G. et al. Automation of the collection and processing of X-ray diffraction data a generic approach.
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