Thermodynamic Properties of 65 Elements
Author : Charles E. Wicks
Publisher :
Page : 162 pages
File Size : 23,26 MB
Release : 1963
Category : Carbides
ISBN :
Author : Charles E. Wicks
Publisher :
Page : 162 pages
File Size : 23,26 MB
Release : 1963
Category : Carbides
ISBN :
Author :
Publisher :
Page : 204 pages
File Size : 37,65 MB
Release : 1970
Category : Physical instruments
ISBN :
Author : Gesina C. Carter
Publisher :
Page : 204 pages
File Size : 30,94 MB
Release : 1968
Category : Alloys
ISBN :
The Alloy Data Center, part of the National Standard Reference Data System, has two primary functions. One is to stimulate cooperation and coordination among the existing data centers in the area of the physical properties of well characterized alloys. The final data generated by these centers for publication should be consistent with one another where correlation or possible overlap exists. The other purpose is the collection (from publications as well as private communications), evaluation, and publication of data in some areas where special competence exists in the Alloy Physics Section. Of interest to the center are metals, semimetals, intermetallic compounds, and alloys. Excluded are those materials which have ill-defined constitutions and heat treatments. An automated system was developed to meet the bibliographic needs of the center. This system will be described as well as the specific properties of interest. The system presently contains a complete annotated file dealing with NMR Knight shift measurements. The soft X-ray spectroscopy compilation is being kept up-to-date with the same system. (Author).
Author : L. B. Pankratz
Publisher :
Page : 492 pages
File Size : 34,22 MB
Release : 1982
Category : Chemical elements
ISBN :
Author : D. L. Hildenbrand
Publisher :
Page : 702 pages
File Size : 40,18 MB
Release : 1978
Category : High temperatures
ISBN :
Author :
Publisher :
Page : 964 pages
File Size : 13,59 MB
Release : 1994
Category :
ISBN :
Author : United States. National Bureau of Standards
Publisher :
Page : 460 pages
File Size : 31,46 MB
Release : 1965
Category : Chemistry, Physical and theoretical
ISBN :
Author :
Publisher :
Page : 1492 pages
File Size : 20,93 MB
Release : 1966
Category : Aeronautics
ISBN :
Author : N. Hannay
Publisher : Springer Science & Business Media
Page : 731 pages
File Size : 25,15 MB
Release : 2012-12-06
Category : Science
ISBN : 1468480820
The last quarter-century has been marked by the extremely rapid growth of the solid-state sciences. They include what is now the largest subfield of physics, and the materials engineering sciences have likewise flourished. And, playing an active role throughout this vast area of science and engineer ing have been very large numbers of chemists. Yet, even though the role of chemistry in the solid-state sciences has been a vital one and the solid-state sciences have, in turn, made enormous contributions to chemical thought, solid-state chemistry has not been recognized by the general body of chemists as a major subfield of chemistry. Solid-state chemistry is not even well defined as to content. Some, for example, would have it include only the quantum chemistry of solids and would reject thermodynamics and phase equilibria; this is nonsense. Solid-state chemistry has many facets, and one of the purposes of this Treatise is to help define the field. Perhaps the most general characteristic of solid-state chemistry, and one which helps differentiate it from solid-state physics, is its focus on the chemical composition and atomic configuration of real solids and on the relationship of composition and structure to the chemical and physical properties of the solid. Real solids are usually extremely complex and exhibit almost infinite variety in their compositional and structural features.
Author : Igor L. Shabalin
Publisher : Springer Nature
Page : 942 pages
File Size : 44,48 MB
Release : 2022-08-12
Category : Technology & Engineering
ISBN : 3031071751
This book, as the fourth volume, continues on ultra-high temperature materials with melting (sublimation or decomposition) points around or over 2500 °C. In this quality the book has over-branched cross-links with the sections and tables of the previous Volumes I-III. Similarly to Volumes I-III, the book includes a thorough treatment of the physical and chemical properties of ultra-high temperature materials, namely such as W semi- and monocarbides, and continues the description of refractory carbides, which was begun from Volume II of the series. The book will be of interest to researchers, engineers, postgraduate, graduate and undergraduate students alike. The readers are provided with the full qualitative and quantitative assessment, which is based on the latest updates in the field of fundamental physics and chemistry, nanotechnology, materials science, design and engineering.