Advances in X-Ray Analysis: Volume 2 Proceedings of the Seventh Annual Conference on Applications of X-Ray Analysis Held August 13–15, 1958
Autor William M. Muelleren Limba Engleză Paperback – 10 oct 2013
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Specificații
ISBN-13: 9781468486339
ISBN-10: 1468486330
Pagini: 360
Ilustrații: VI, 353 p. 106 illus.
Dimensiuni: 152 x 229 x 19 mm
Greutate: 0.48 kg
Ediția:Softcover reprint of the original 1st ed. 1960
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States
ISBN-10: 1468486330
Pagini: 360
Ilustrații: VI, 353 p. 106 illus.
Dimensiuni: 152 x 229 x 19 mm
Greutate: 0.48 kg
Ediția:Softcover reprint of the original 1st ed. 1960
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
Annealing Texture in a Rolled and Artificially Nucleated Aluminum Single Crystal.- Substructure Characteristics of Fine-Grained Metals and Alloys Disclosed by X-Ray Microscopy and Diffraction Analysis.- I—Description and Application of Diffraction Method.- II—Description of X-Ray Double-Crystal Diffractometer Combining X-Ray Microscopy and Diffraction Analysis.- On the Mechanism of Recrystallization of Aluminum.- Some X-Ray Observations on the Oxidation Characteristics of Binary Niobium Alloys.- Selection of Spectra for X-Ray Microscopy.- The Crystallography of Compounds in the Calcium Oxide-Niobium Pentoxide System.- Instrumentation for X-Ray Diffraction Studies of Highly Radioactive Samples.- Microstructure, Mass and Chemical Analysis with 8 to 44 Angstrom X-Radiation.- Fluorescent X-Ray Analysis of Highly Radioactive Samples.- Further Application of the Intermediate X-Ray Probe.- Determination of Uranium in Flotation Concentrates and in Leach Liquors by X-Ray Fluorescence.- X-Ray Spectrographic Determination of Uranium and Plutonium in Aluminum and Other Reactor Fuel Materials.- The Evaluation of the PXQ for the Analysis of Cements and Related Materials.- A Novel Approach to Discrimination in X-Ray Spectrographic Analysis.- Crystal Chemical Studies by X-Ray Fluorescence.- An Application of the Mutual Standards Concept to X-Ray Fluorescence Spectroscopy: The Analysis of Meteoritic Sulphide Nodules for Eight Elements.- Quantitative Analysis of Trace Amounts of Tin in Steel by Means of X-Ray Fluorescence.- Techniques for X-Ray Diffraction Studies of Radioactive Materials.- Cladding Thickness of Fuel Elements by X-Rays.- X-Ray Projection Microradiography and Divergent Beam Techniques.- A Universal Detector for the X-Ray Spectrograph.- Recent Developments inFluorescent X-Ray Spectrographic-Absorptiometric Analyses of Mineral Systems.- Determination of Calcium in Wolframite Concentrates by Fluorescent X-Ray Spectrography.- X-Ray Emission Spectrographic Analysis of High-Purity Rare-Earth Oxides.- Recrystallization Studies of High Purity Aluminum Single Crystals.
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It is interesting to observe the ever increasing versatility of X-ray analysis as evidenced by the wide range of application to the myriads of problems confronting the technological com munity, a versatility limited only by the imagination and inge nuity of the scientist, the designer of X-ray equipment, and the novice or student. Tomorrow's engineering alloys will undoubt edly be influenced by today's extremely low- and very high-tem perature X-ray research. New and continued insight into the basic architecture of crystalline materials is being achieved by studies of lattice imperfection, recrystallization habit, and phase transformation. Techniques for identification and analysis of minerals by X-ray diffraction and fluorescence are equally ame nable to pathological and physiological diagnosis. The experi mental setup of this month may well become an instrument for routine process control next month. And such developments occur so rapidly iIi so many different laboratories that it is difficult to keep abreast of this tidal wave of information. The dictates of this nation's economy and its struggle for technological supremacy demand a full awareness of the ac complishments of one's associates. Such awareness is most effectively obtained through personal contact. where the beginner can benefit from the experiences of the expert, the basic re searcher and the applied researcher can exchange views, and the creative research of each is nurtured by the sharing of mutual or associated problems.
It is interesting to observe the ever increasing versatility of X-ray analysis as evidenced by the wide range of application to the myriads of problems confronting the technological com munity, a versatility limited only by the imagination and inge nuity of the scientist, the designer of X-ray equipment, and the novice or student. Tomorrow's engineering alloys will undoubt edly be influenced by today's extremely low- and very high-tem perature X-ray research. New and continued insight into the basic architecture of crystalline materials is being achieved by studies of lattice imperfection, recrystallization habit, and phase transformation. Techniques for identification and analysis of minerals by X-ray diffraction and fluorescence are equally ame nable to pathological and physiological diagnosis. The experi mental setup of this month may well become an instrument for routine process control next month. And such developments occur so rapidly iIi so many different laboratories that it is difficult to keep abreast of this tidal wave of information. The dictates of this nation's economy and its struggle for technological supremacy demand a full awareness of the ac complishments of one's associates. Such awareness is most effectively obtained through personal contact. where the beginner can benefit from the experiences of the expert, the basic re searcher and the applied researcher can exchange views, and the creative research of each is nurtured by the sharing of mutual or associated problems.