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Chapters: X-Ray Crystallography, Synchrotron Radiation, Powder Diffraction, Small-Angle X-Ray Scattering, Reciprocal Lattice, Texture, Synchrotron Light Source, Surface Extended X-Ray Absorption Fine Structure, Grazing-Incidence Small-Angle X-Ray Scattering, Xanes, Metal L-Edge, High Energy X-Rays, Dynamical Theory of Diffraction, X-Ray Absorption...
Chapters: X-Ray Crystallography, Synchrotron Radiation, Powder Diffraction, Small-Angle X-Ray Scattering, Reciprocal Lattice, Texture, Synchrotron Light Source, Surface Extended X-Ray Absorption Fine Structure, Grazing-Incidence Small-Angle X-Ray Scattering, Xanes, Metal L-Edge, High Energy X-Rays, Dynamical Theory of Diffraction, X-Ray Absorption Spectroscopy, Metal K-Edge, Momentum Transfer, Ligand K-Edge, Racemic Crystallography, Help Conquer Cancer, Particle Beam Cooling. Source: Wikipedia. Pages: 146. Not illustrated. Free updates online. Purchase includes a free trial membership in the publisher's book club where you can select from more than a million books without charge. Excerpt: X-ray crystallography is a method of determining the arrangement of atoms within a crystal, in which a beam of X-rays strikes a crystal and diffracts into many specific directions. From the angles and intensities of these diffracted beams, a crystallographer can produce a three-dimensional picture of the density of electrons within the crystal. From this electron density, the mean positions of the atoms in the crystal can be determined, as well as their chemical bonds, their disorder and various other information. Since many materials can form crystals such as salts, metals, minerals, semiconductors, as well as various inorganic, organic and biological molecules X-ray crystallography has been fundamental in the development of many scientific fields. In its first decades of use, this method determined the size of atoms, the lengths and types of chemical bonds, and the atomic-scale differences among various materials, especially minerals and alloys. The method also revealed the structure and functioning of many biological molecules, including vitamins, drugs, proteins and nucleic acids such as DNA. X-ray crystallography is still the chief method for characterizing the atomic structure of new materials and in discerning materials that appear si...More: http://booksllc.net/?id=34151
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