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- W1519386694 abstract "Synchrotron radiation (SR) is widely used in a variety of macromolecular crystallography applications. These include measurement of the highest possible resolution data, the study of large unit cells, the acquisition of data from crystals too small to study by other methods, the use of anomalous dispersion effects for phase determination, and time-resolved studies. Advanced instrumentation for protein and virus crystallography and very active facility support have been established at a large number of SR facilities; this includes beamline optics (the monochromator and focusing mirror that deliver an X-ray beam to the specimen, especially tailored for these measurements), as well as detectors and data-acquisition instrumentation. For dynamic studies, apparatus is needed to stimulate or perturb a sample (e.g., laser flash) and monitor the effects of this stimulation. Novel crystallographic data-collection methods are discussed in this chapter. The properties of synchrotron radiation can be described in terms of the well-defined quantities of high flux (large number of photons), high brightness (well collimated), high brilliance (small source size and well collimated), tunable, polarized, defined time structure (fine time resolution), and exactly calculable spectra." @default.
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- W1519386694 date "1997-01-01" @default.
- W1519386694 modified "2023-09-25" @default.
- W1519386694 title "[14] Overview of synchrotron radiation and macromolecular crystallography" @default.
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- W1519386694 doi "https://doi.org/10.1016/s0076-6879(97)76060-9" @default.
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