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Record Nr. |
UNINA9910460667703321 |
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Titolo |
Radiation and nuclear techniques in material science : Selected, peer reviewed papers from the Conference on Physical-Technical Problems of Nuclear Science, Energy Generation and Power Industry (PTPAI-2014), June 5-7, 2014, Tomsk, Russia / / edited by Oleg Y. Dolmatov, Igor B. Stepanov and Sergey N. Liventsov |
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Pubbl/distr/stampa |
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Plaffikon, Switzerland : , : Trans Tech Publications, , 2015 |
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©2015 |
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ISBN |
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Descrizione fisica |
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1 online resource (751 p.) |
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Collana |
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Advanced Materials Research ; ; Volume 1084 |
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Disciplina |
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Soggetti |
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Materials science |
Nuclear engineering |
Radiation |
Electronic books. |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Radiation and Nuclear Techniques in Material Science; Preface and Conference Organization; Table of Contents; Chapter 1: Materials Science and Technologies; Analysis of Magnetron-Deposited Titanium Oxynitride Coatings by Scanning Electron Microscopy and Raman Scattering; Behavior of TiO2-B System under Mechanical Activation; Changes in the Spectral Characteristics of Aluminum Films Deposited under Assisting Argon Ion Beam; Eddy Current Method for Testing of Metals under Simultaneous Exposure to Radiation and Hydrogenation; Effect of Hydrogen on Conductivity of Metals |
Formation of Shear Zone's Defect Structure in F.C.C. MetalsInfluence of Carbon Pulse Ion Beam on Titanium Alloy; Investigation of Multilayered Film Structure Properties for Creation of Hydrogen Selective Membrane; Investigation of ZrO2 and TiO2 Coatings Influence on Hydrogen Sorption Behavior by Zirconium Alloy Zr1%Nb at Saturation from Gas Atmosphere; Laws of Radiation Grafting of Styrene to PVDF Films and Characterization of the Grafted Polymer; Methods of Uranium |
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Hexafluoride Purification |
Obtaining Hydrogen and Carbon Materials from Hydrocarbonic Gas in Microwave Plasma Discharge at Amospheric PressureStudy on the Spatial Structure of Ultrafine-Grained Light Alloys by Microtomography; Technology of Synthesis of Opal Matrix Metamaterials; Temperature Effect on the Rate of Hydrogen Desorption by Carbon Materials; UHF-Properties of Nanocomposites: Magnetic Resonance; Simulation of the Uranium Crystallization Process Using Cellular Automata; Development of a Thermal Model of the Experimental Electrolyzer; Fluoride Technology of Processing Oxides of Rare Earth Elements |
Chapter 2: Plasma, Microwave, Ion, Electron and Isotope TechnologiesDevelopment of Impurities Determination Method in Isotopically Enriched Preparations; Carbon and Oxygen Atoms Distribution along Low-Temperature Plasma Torch in the Magnetic Field; Cluster Structure of Salt Solutions in Polar Dielectric Liquids; Control over Hard X-Ray Parameters Using External Temperature Gradient; Determination of Optimal Parameters of the X-Ray Source on the Basis of Compact Electron Accelerators; Diffusion of Hydrogen in Steel by Electron Irradiation |
Dosimetry Equipment for the Pulsed X-Ray Source Parameters InvestigationExcitation of Electromagnetic Waves in a Vircator by Radially Diverging Beam; Features of the Distribution Process of the Electromagnetic Field Frequency Components in the High-Frequency Torch Discharge Plasma; First Principle Calculations of Diffusion Barriers for Hydrogen in α-Zirconium; Form-Factors of Relativistic Electron Bunches in Polarization Radiation; Manifestation of the Spin in the Isotope Effects; Nonlinear Electrodynamic Effects of the Torch Discharge Argon Plasma |
Plasma Module Based on High Frequency Torch Plasmatron for the Research of the Processes of Plasma Utilization and Immobilization of Closed NFC Wastes |
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Sommario/riassunto |
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Collection of selected, peer reviewed papers from the Conference on Physical-Technical Problems of Nuclear Science, Energy Generation and Power Industry, (PTPAI-2014), June 5-7, 2014, Tomsk, Russia. The 151 papers are grouped as follows: Chapter 1: Materials Science and Technologies;Chapter 2: Plasma, Microwave, Ion, Electron and Isotope Technologies; Chapter 3: Nuclear Engineering and Fuel Cycles; Chapter 4: Radiation Technologies in Medicine; Chapter 5: Computation, Automation, Information Technologies and Safety Systems in Nuclear Industry |
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