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Fundamental Aspects of Inert Gases in Solids

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Table of Contents

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    Book Overview
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    Chapter 1 Theoretical Studies of Helium in Metals
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    Chapter 2 Molecular Dynamics Simulations of Rare Gases in Metals: Interactions
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    Chapter 3 Theoretical Description of the Growth and Stability of Helium Platelets in Nickel
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    Chapter 4 Helium Defect Interactions in Metals and Silicon
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    Chapter 5 Diffusion and Clustering of Helium in Noble Metals
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    Chapter 6 Mobility of Helium and Nitrogen Implanted at High Fluences into Solids, as Derived from their Concentration Profiles
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    Chapter 7 3 He Effects in Tritides
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    Chapter 8 Fundamental Properties of Helium in Metal Tritides
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    Chapter 9 Elucidation of Fundamental Properties of Helium in Metals by Nuclear Magnetic Resonance Techniques
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    Chapter 10 Inert Gas Bubbles in Metals: A Review
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    Chapter 11 Formation and Annealing of Kr Precipitates in Ni Thin Films
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    Chapter 12 Cross Section Transmission Electron Microscopy (XTEM) on Inert Gas Implanted Metals
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    Chapter 13 Fundamental and Applied Aspects of Noble Gas Bubbles in Steel
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    Chapter 14 Gas Bubble Lattices in Metals
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    Chapter 15 Macroscopic Phenomena Induced by High Dose MeV Energy Implantation of He, Ne and Ar Ions
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    Chapter 16 Positron Studies of Inert Gases in Metals
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    Chapter 17 Positron Studies of Helium in Ni, Ni-Ti and Ti-Stabilised Steel
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    Chapter 18 Comparison of Results from Different Experimental Techniques (SANS, TEM, PAT, SEM) Applied to Bulk Cu and Ni Containing Krypton
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    Chapter 19 83 Kr Mössbauer Spectroscopy and Inert Gas Inclusions in Aluminium and Silicon
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    Chapter 20 133 Xe Mössbauer Study of Neon Inclusions in Molybdenum
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    Chapter 21 Overpressurized Inert Gas Clusters in Al and Si Observed by EXAFS Spectroscopy
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    Chapter 22 Behaviour of Krypton Atoms Implanted into Aluminium as Investigated by a Channelling Method
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    Chapter 23 X-Ray Diffraction Studies of Kr and Pb Inclusions in Aluminium
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    Chapter 24 Gas Densities in Helium Bubbles Determined by Small Angle Neutron Scattering
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    Chapter 25 Inert Gas Bubble Coarsening Mechanisms
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    Chapter 26 Influence of Real Gas Behaviour on the Ostwald Ripening of Inert Gas Bubbles in Bulk Materials
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    Chapter 27 Recent Experimental Studies on Thermal and Irradiation-Induced Resolution of Gas Atoms from Bubbles in Solids
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    Chapter 28 Helium Bubble Nucleation in Aluminium Irradiated with 600 MeV Protons
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    Chapter 29 New Aspects of Gas-Induced Swelling in Helium-Implanted Nickel during Annealing
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    Chapter 30 Phase Transformations of Argon in Bubbles Formed in Nickel during Low and High Energy Argon Ion Bombardment
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    Chapter 31 Inert Gas Bubble Growth Mechanism Maps for Metals
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    Chapter 32 Loop-Punching as a Mechanism for Inert Gas Bubble Growth in Ion-Implanted Metals
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    Chapter 33 Possible Mechanisms Limiting the Pressure in Inert Gas Bubbles in Metals
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    Chapter 34 Parameters and Processes Controlling Helium Bubble Formation in Metals at Elevated Temperatures
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    Chapter 35 Fundamental Aspects of Inert Gas Behaviour in Nuclear Fuels: Oxides, Carbides and Nitrides
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    Chapter 36 Simulating the Behaviour of Inert Gases in UO 2
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    Chapter 37 Condensed-Phase Xenon and Krypton in UO 2 Spent Fuel
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    Chapter 38 Kinetics of Recrystallization and Fission-Gas-Induced Swelling in High Burnup UO 2 and U 3 Si 2 Nuclear Fuels
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    Chapter 39 Fission Gas Behaviour during Power Transients in High Burn-Up LWR Nuclear Fuels Studied by Electron Microscopy
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Title
Fundamental Aspects of Inert Gases in Solids
Published by
Springer, December 2013
DOI 10.1007/978-1-4899-3680-6
ISBNs
978-1-4899-3680-6, 978-1-4899-3682-0
Editors

Donnelly, S. E., Evans, J. H.

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The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 1 100%
Readers by discipline Count As %
Materials Science 1 100%