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SOLUBILITY, DETERMINATION, DIFFUSION AND MECHANICAL EFFECTS OF HYDROGEN IN URANIUM.

SOLUBILITY, DETERMINATION, DIFFUSION AND MECHANICAL EFFECTS OF HYDROGEN IN URANIUM. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


SOLUBILITY, DETERMINATION, DIFFUSION AND MECHANICAL EFFECTS OF HYDROGEN IN URANIUM.

SOLUBILITY, DETERMINATION, DIFFUSION AND MECHANICAL EFFECTS OF HYDROGEN IN URANIUM. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Solubility, Determination, Diffusion and Mechanical Effects of Hydrogen in Uranium

Solubility, Determination, Diffusion and Mechanical Effects of Hydrogen in Uranium PDF Author: W. D. Davis
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ISBN:
Category : Nuclear energy
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The Determination of Hydrogen in Uranium by Mass Spectrometry

The Determination of Hydrogen in Uranium by Mass Spectrometry PDF Author: L. A. Fergason
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Metal Hydrides focuses on the theories of hydride formation as well as on experimental procedures involved in the formation of hydrides, the reactions that occur between hydrides and other media, and the physical and mechanical properties of the several classes of hydrides. The use of metal hydrides in the control of neutron energies is discussed, as are many other immediate or potential uses, e.g., in the production of high-purity hydrogen and in powder metallurgy. It is hoped that this book will serve as a valuable reference to students, research professors, and industrial researchers in metal hydrides and in allied fields. Selected chapters may serve specialists in other fields as an introduction to metal hydrides. The information contained herein will also be of lasting and practical value to the metallurgist, inorganic chemist, solid-state physicist, nuclear engineer, and others working with chemical or physical processes involving metal-hydrogen systems.

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This series was organized to provide a forum for review papers in the area of corrosion. The aim of these reviews is to bring certain areas of corrosion science and technology into a sharp focus. The volumes of this series are published approximately on a yearly basis and each contains three to five reviews. The articles in each volume are selected in such a way as to be of interest both to the corrosion scientists and the corrosion technologists. There is, in fact, a particular aim in juxtaposing these interests because of the importance of mutual interaction and interdisciplinarity so important in corrosion studies. It is hoped that the corrosiori scientists in this way may stay abreast of the activities in corrosion technology and vice versa. In this series the term "corrosion" is used in its very broadest sense. It includes, therefore, not only the degradation of metals in aqueous en vironment but also what is commonly referred to as "high-temperature oxidation. " Further, the plan is to be even more general than these topics; the series will include all solids and all environments. Today, engineering solids include not only metals but glasses, ionic solids, polymeric solids, and composites of these. Environments of interest must be extended to liquid metals, a wide variety of gases, nonaqueous electrolytes, and other non aqueous liquids.

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