Results 221 to 230 of about 124,527 (264)
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X-Ray Scattering

1984
There are two main methods for investigating the structure of solids. They are X-ray structure analysis (study of X-ray diffraction and scattering) and microscopic investigation. The first method is rather general, i.e., it can study the atomic and molecular structure of matter and also study the microstructures of heterophase systems.
openaire   +1 more source

Quantity and Quality of Scattered X Rays

The British Journal of Radiology, 1961
The paper presents measurements of the amount and quality of radiation scattered from materials of different atomic numbers. At all energies of the primary X-ray beam used, low atomic number materials scatter the greatest quantity of radiation, the differences in the normal deep therapy range being large.
J H, MARTIN, G M, MULLER
openaire   +2 more sources

X-Ray Diffraction and Small Angle X-Ray Scattering

2012
General Introduction Theoretical Approaches MOLECULAR SPECTROSCOPY Infrared Spectroscopy Raman Spectroscopy Electronic Spectroscopy (UV-Vis) Photoluminescence Spectroscopy Neutron Scattering SFG, FM/IRAS LOCAL SPECTROSCOPY Nuclear Magnetic Resonance Electron Paramagnetic Resonance Mössbauer Spectroscopy LEIS and SIMS (TOF SIMS) EXAFS and XANES AES, XPS
Behrens, Malte, Schlögl, Robert
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X-Ray Resonance Exchange Scattering

Physical Review Letters, 1988
Large resonant magnetization-sensitive x-ray scattering is predicted to occur in the vicinity of the L/sub II/, L/sub III/, and M/sub II/--M/sub V/ absorption edges in the rare-earth and actinide elements, and at the K and L edges in the transition elements.
, Hannon, , Trammell, , Blume, , Gibbs
openaire   +2 more sources

Small-Angle X-Ray Scattering

1994
Small-angle X-ray scattering (SAXS) was discovered in 1938 by A. Guinier.(1) It is now a powerful method for characterizing catalysts (particle size, surface area) and disordered materials such as gels, sols, defective alloys, porous oxides or carbons, polymers.
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MD Simulations and X-Ray Scattering

In the present chapter, the link between Molecular Dynamics, one of the most renowned simulation techniques in the world of statistical physics, and X-Ray diffraction, probably the most powerful and non-destructive technìque to assess the structure of materials of any kind, is examined. After a brief survey of classical (force field-based) and quantum
Gontrani L.   +4 more
openaire   +4 more sources

Dynamics of resonant x-ray and Auger scattering

Reviews of Modern Physics, 2021
Michael Odelius   +2 more
exaly  

Small-Angle X-ray Scattering of Polymers

Chemical Reviews, 2001
, Benjamin Chu
exaly  

Small Angle X-ray Scattering for Nanoparticle Research

Chemical Reviews, 2016
Tao Li, Byeongdu Lee, Andrew J Senesi
exaly  

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