Last edited by Kataur
Monday, July 27, 2020 | History

1 edition of Determination of Hydrogen in Materials Nuclear Physics Methods found in the catalog.

Determination of Hydrogen in Materials Nuclear Physics Methods

by Pulat K. Khabibullaev

  • 98 Want to read
  • 21 Currently reading

Published by Springer Berlin Heidelberg in Berlin, Heidelberg .
Written in English

    Subjects:
  • Nuclear fusion,
  • Particles (Nuclear physics),
  • Nuclear physics,
  • Physics

  • About the Edition

    Measuring the hydrogen content in materials is important both for research and for various applications in material and surface sciences, such as hydrogen embrittlement of steel, controlled thermonuclear reaction first wall studies, and changed material properties caused by dissolved hydrogen. Hydrogen is the most difficult atomic species to analyze by traditional methods, but nuclear physics methods are particularly suited for this purpose. President of the Uzbek SSR Academy of Sciences P.K. Khabibullaev and Professor B.G. Skorodumov discuss in this book the characteristics of these methods, such as lower detection limits, selectivity in respect to different isotopes, accuracy, depth resolution and maximum detection depth. Examples of applications that are dealt with include the determination of material humidity, the dating of objects, the study of hydrogen diffusion including non-stationary processes, and the investigation of changes in material properties like superconductivity, plasticity and electrical properties due to contamination by hydrogen.

    Edition Notes

    Statementedited by Pulat K. Khabibullaev, Boris G. Skorodumov
    SeriesSpringer Tracts in Modern Physics -- 117, Springer tracts in modern physics -- 117.
    ContributionsSkorodumov, Boris G.
    Classifications
    LC ClassificationsQC176-176.9
    The Physical Object
    Format[electronic resource] /
    Pagination1 online resource (x, 90 p.)
    Number of Pages90
    ID Numbers
    Open LibraryOL27030774M
    ISBN 103540506756, 3540460675
    ISBN 109783540506751, 9783540460671
    OCLC/WorldCa851768039

    Figure 1: Hydrogen content calibration using hydrocarbons at 40°C. Although this method was designed for aviation fuel, it can be adapted to suit distillates covered by other methods (e.g. D and D) as well as those which are more volatile or have a high wax content. Nuclear techniques in general and neutrons based methods in particular have played and will for materials and nuclear fuel characterization and development.. C. Paunoiu, M. Ciocanescu Characterization and Testing of Materials was held May 29–June 2, in.

    He was the founding Director of the University of Virginia Institute of Nuclear and Particle Physics. He has published three college textbooks for physics: "Classical Dynamics" and "Modern Physics" (both published with Brooks Cole, a part of Cengage Learning), and "Physics for Scientists and Engineers."/5(25). Abstract. This progress report focuses on experimental and computational studies used to evaluate nuclear magnetic resonance (NMR) spectroscopy and magnetic resonance imaging (MRI) for detecting, quantifying, and monitoring hydrogen and other magnetically active nuclei ({sup 3}H, {sup 3}He, {sup }Pu, {sup }Pu) in Spent nuclear fuels and packaging materials.

    Features chapters written by world-renowned experts in nuclear technique and hydrogen-related research This book provides a comprehensive overview of the main nuclear characterization techniques used to study hydrogen absorption and desorption in materials. The various techniques (neutron scattering, nuclear magnetic resonance, ion-beams, positron.   Today the applications of nuclear physics span a very broad range of topics and fields. This review discusses a number of aspects of these applications, including selected topics and concepts in nuclear reactor physics, nuclear fusion, nuclear non Cited by: 9.


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Determination of Hydrogen in Materials Nuclear Physics Methods by Pulat K. Khabibullaev Download PDF EPUB FB2

Examples of applications that are dealt with include the determination of material humidity, the dating of objects, the study of hydrogen diffusion including non-stationary processes, and the investigation of changes in material properties like superconductivity, plasticity and electrical properties due to contamination by hydrogen.

Measuring the hydrogen content in materials is important both for research and for various applications in material and surface sciences, such as hydrogen embrittlement of steel, controlled thermonuclear reaction first wall studies, and changed material properties caused by dissolved hydrogen.

Abstract. The methods of nuclear physics developed in the s as valuable tools in the investigation of hydrogen-material systems soon found applications in the solution of such urgent problems as the behaviour of hydrogen in materials used in nuclear, thermonuclear and hydrogen energetics, the influence of hydrogen on the properties of such materials as amorphous silicon used Cited by: Get this from a library.

Determination of Hydrogen in Materials Nuclear Physics Methods. [Pulat K Khabibullaev; Boris G Skorodumov] -- Measuring the hydrogen content in materials is important both for research and for various applications in material and surface sciences, such as hydrogen embrittlement of steel, controlled.

Get this from a library. Determination of hydrogen in materials: nuclear physics methods. [P K Khabibullaev; B G Skorodumov]. Entdecken Sie "Determination of Hydrogen in Materials" von Boris G. Skorodumov und finden Sie Ihren Buchhändler. Measuring the hydrogen content in materials is important both for research and for various applications in material and surface sciences, such as hydrogen embrittlement of steel, controlled thermonuclear reaction first wall studies, and changed material properties caused by.

Physics and Technology of Nuclear Materials presents basic information regarding the structure, properties, processing methods, and response to irradiation of the key materials that fission and fusion nuclear reactors have to rely upon. Organized into 12 chapters, this book begins with selectively several fundamentals of nuclear physics.

Nuclear-geophysics investigations are widely and successfully used in prospecting, exploration and development of oil and gas fields. These methods are most efficient in the further exploration of producing oil fields, the control of oil-and-gas field development and. Detection of elastically scattered recoils instead of projectiles offers the possibility to hydrogen depth profile determination of samples and is still a quantitative method for materials analysis.

Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms VolumeIssues 1–2, 1 JulyPages Determination of hydrogen in 6H–SiC epitaxial layers by the 15 N nuclear reaction analysis techniqueCited by: 3.

Neutron Diffraction. Neutrons have been studied for the determination of crystalline structures. The study of materials by neutron radiation has many advantages against the normally used such as X-rays and electrons.

Neutrons are scattered by the nucleus of the atoms rather than X-rays, which are scattered by the electrons of the atoms. Page 6. spectacular growth of modern computer and telecommunications industries and, consequently, to the information revolution. For many years after the invention of the transistor, the major intellectual challenge facing researchers in condensed-matter and materials physics was to understand the physical properties of nearly perfect single crystals of elements, simple compounds, and alloys.

Nuclear Physics, Heavy Ions, Hadrons *immediately available upon purchase as print book shipments may be delayed due to the COVID crisis. ebook access is Brand: Vieweg+Teubner Verlag. This book covers the general theories and techniques of nuclear chemical analysis, directed at applications in analytical chemistry, nuclear medicine, radiophysics, agriculture, environmental.

arXiv:physics/v5 [-ph] 26 Feb Fourth Generation Nuclear Weapons: Military effectiveness and collateral effects Andre Gsponer Independent Scientific Research Institute CH Geneva, Switzerland Version ISRI February 2, Abstract The paper begins with a general introduction and update to Fourth Gen-Cited by: 4.

Nuclear and Particle Physics provides an introductory course on nuclear and particle physics for undergraduate and early-graduate students, which the author has taught for several years at the University of Zurich.

It contains fundamentals on both nuclear and particle physics, giving emphasis to the discovery and history of developments in the. The high speed of contaminants growth needs the burgeoning of new analytical techniques to keep up with the continuous demand for monitoring and legislation on food safety and environmental pollution control.

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Sorption kinetics of radium on hydroxyapatite and titanium dioxide nanomaterials were studied. The main aim of the current study was to determine the rate-controlling process and the corresponding kinetic model, due to the application of studied nanomaterials as α-emitters’ carriers, and to assess the sorption properties of both materials from the radiopharmaceutical point of view.

The book is the culmination of the authors' many years of teaching and research in atomic physics, nuclear and particle physics, and modern physics.

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