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|a Multiscale kinetic modelling of materials :
|b proceedings of the symposium "Multiscale Kinetic Modelling of Materials", organised within the EMRS Fall Meeting 2006 held in Warsaw, Poland, 4-8 September 2006 /
|c edited by R. Kozubski, G.E. Murch and P. Zieba.
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|a Multiscale kinetic modeling of materials
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|a Stafa-Zuerich ;
|a United Kingdom :
|b Trans Tech,
|c 2007.
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|c ©2007
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|a 1 online resource (xiv, 168 pages) :
|b illustrations
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|a text
|b txt
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|a Diffusion and defect data. Pt. B, Solid state phenomena,
|x 1012-0394 ;
|v 129
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|a Conference proceedings.
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|a Includes bibliographical references and index.
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|a Print version record.
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|a MULTISCALE KINETIC MODELLING OF MATERIALS; Participants; Committees; Preface; Table of Contents; Bridging Different Length and Time Scales in Diffusion Problems Using a Lattice Monte Carlo Method ; Electro-Mechano-Chemistry; Transport Problem in Four Time Scales ; Concurrent Multiscale Kinetic Monte Carlo-Continuum Models for the Evolution of Solids via Diffusion ; Comparison of the Strain Distribution Obtained from Multi Scale and Conventional Approaches to Modelling Extrusion ; Energetic Landscapes and Diffusion Properties in FeCu Alloys.
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|6 880-01
|a A Phase Field Model for grain Growth and Thermal Grooving in Thin Films with Orientation Dependent Surface Energy An Extensive Study of Charge Effects in Silicon Doped Heterofullerenes ; Interface Shape Change and Shift Kinetics on the Nanoscale; Analysis of Oxygen Segregation at Metal-Oxide Interfaces Using a New Lattice Monte Carlo Method ; Materials Hardness Estimation by Simulation of the Indentation Process ; Stability of Hollow Nanospheres: A Molecular Dynamics Study ; First Principles Study of Al(100) Twisted Interfaces.
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|a Interface Dynamics of Melt Instabilities on Semiconductor Surface Grain Boundary Migration in Nanocrystalline Iron ; Mutiscale Plastic Deformation near a Fatigue Crack from Diffraction ; Statistical Model of Grain Growth in Polycrystalline Nanomaterials ; Keywords Index; Authors Index.
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|a The inspiration for this book was to gather together the efforts of those physicists, materials scientists/engineers and other scientists who are carrying out interdisciplinary research into multiscale modelling of time-evolving phenomena in materials. The resultant collection focuses on the principal topics of: 1. The current development of theoretical and model approaches to structural kinetics (links between quantum electron theories of solids and non-equilibrium thermodynamics); 2. Computer simulations as an effective tool for studying atomistic mechanisms of structural kinetics (Monte Car.
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546 |
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|a English.
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590 |
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Materials
|x Analysis
|v Congresses.
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|a Kinetic theory of matter
|v Congresses.
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|a Mathematical models
|v Congresses.
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|a Matériaux
|x Analyse
|v Congrès.
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|a Théorie cinétique de la matière
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|a Materials
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|a Kinetic modelling
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|a Conference papers and proceedings
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|a Kozubski, Rafał,
|d 1955-
|1 https://id.oclc.org/worldcat/entity/E39PBJdcvwwcK9gktVWDccHt8C
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700 |
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|a Murch, G. E.
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|a Zięba, Paweł.
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|i has work:
|a Multiscale kinetic modelling of materials (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCGvvmgwWfPwy9xXRRjxKv3
|4 https://id.oclc.org/worldcat/ontology/hasWork
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|t Multiscale kinetic modelling of materials
|z 9783908451396
|w (DLC) 2007462621
|w (OCoLC)145387353
|
830 |
|
0 |
|a Diffusion and defect data.
|n Pt. B,
|p Solid state phenomena ;
|v 129.
|x 1012-0394
|
856 |
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|z Texto completo
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|6 505-01/(S
|a Multi-Lattice Kinetic Monte Carlo Simulation of Interface Controlled Solid-State Transformations Cluster Dynamics Modeling of Materials: Advantages and Limitations; Interdiffusion of Two L10Phases without Long-Range Order Decrease: Experiments and Molecular Dynamics Simulations; Orientation of Interstitials in Clusters in α-Fe: A Comparison between Empirical Potentials ; Anisotropy of the Vacancy Migration in Ti, Zr and Hf Hexagonal Close-Packed Metals from First Principles ; Monte Carlo Simulation of Texture and Microstructure Transformation during Annealing of Steel.
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