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Stability of Materials - Gonis, A. / Kudrnovsk}, Josef
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Gonis, A. / Kudrnovsk}, Josef:

Stability of Materials - gebrauchtes Buch

ISBN: 9780306453113

Engineering materials with desirable physical and technological properties requires understanding and predictive capability of materials behavior under varying external conditions, such a… Mehr…

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A. Gonis, P. E. Turchi, J. Kudrnovsky:

Stability of Materials (NATO Science Series B: Physics) - gebrauchtes Buch

ISBN: 9780306453113

Good. Used book in good condition. Has wear to the cover and pages. Contains some markings such as highlighting and writing. Ex-library with the usual stamps. 100% guaranteed. 020318

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A. Gonis (Editor), Josef Kudrnovský (Editor), Patrice E.A. Turchi (Editor):
Stability of Materials (NATO Science Series B: Physics) - gebunden oder broschiert

1996

ISBN: 9780306453113

Springer, 1996-06-30. 1. Hardcover. Used:Good., Springer, 1996-06-30, 0

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GONIS, A.,TURCHI, P. E.,KUDRNOVSKY, J.,:
STABILITY OF MATERIALS - PROCEEDINGS OF A NATO ASI HELD IN CORFU, GREECE, JUNE 25-JULY 7, 1994 - neues Buch

ISBN: 9780306453113

Plenum, 1996. N/A. Unknown Binding. New/New., Plenum, 1996, 6

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Editor-A. Gonis; Editor-Josef Kudrnovský; Editor-Patrice E.A. Turchi:
Stability of Materials (NATO Science Series B: Physics) - gebunden oder broschiert

1996, ISBN: 9780306453113

Springer, 1996-06-30. Hardcover. Good., Springer, 1996-06-30, 2.5

Versandkosten: EUR 10.66 Ergodebooks

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Bibliographische Daten des bestpassenden Buches

Details zum Buch
Stability of Materials

Engineering materials with desirable physical and technological properties requires understanding and predictive capability of materials behavior under varying external conditions, such as temperature and pressure. This immediately brings one face to face with the fundamental difficulty of establishing a connection between materials behavior at a microscopic level, where understanding is to be sought, and macroscopic behavior which needs to be predicted. Bridging the corresponding gap in length scales that separates the ends of this spectrum has been a goal intensely pursued by theoretical physicists, experimentalists, and metallurgists alike. Traditionally, the search for methods to bridge the length scale gap and to gain the needed predictive capability of materials properties has been conducted largely on a trial and error basis, guided by the skill of the metallurgist, large volumes of experimental data, and often ad hoc semi phenomenological models. This situation has persisted almost to this day, and it is only recently that significant changes have begun to take place. These changes have been brought about by a number of developments, some of long standing, others of more recent vintage.

Detailangaben zum Buch - Stability of Materials


EAN (ISBN-13): 9780306453113
ISBN (ISBN-10): 0306453118
Gebundene Ausgabe
Erscheinungsjahr: 1996
Herausgeber: Kluwer Academic/Plenum Publishers

Buch in der Datenbank seit 2008-10-08T13:00:04+02:00 (Berlin)
Detailseite zuletzt geändert am 2020-12-28T14:43:58+01:00 (Berlin)
ISBN/EAN: 0306453118

ISBN - alternative Schreibweisen:
0-306-45311-8, 978-0-306-45311-3
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: gonis antonios, turchi


Daten vom Verlag:

Autor/in: A. Gonis; Josef Kudrnovský; Patrice E.A. Turchi
Titel: NATO Science Series: B; Stability of Materials - Physics (Continued Within NATO Science Series II: Mathematics, Physics and Chemistry)
Verlag: Springer; Springer US
742 Seiten
Erscheinungsjahr: 1996-06-30
New York; NY; US
Gewicht: 1,520 kg
Sprache: Englisch
128,39 € (DE)
131,99 € (AT)
141,50 CHF (CH)
Not available, publisher indicates OP

BB; Book; Hardcover, Softcover / Physik, Astronomie/Atomphysik, Kernphysik; Spektroskopie, Spektrochemie, Massenspektrometrie; Verstehen; modeling; simulation; Metall; Potential; materials properties; Phase; model; alloy; deformation; crystal; B; Solid State Physics; Physics and Astronomy; Spectroscopy and Microscopy; Condensed Matter Physics; Crystallography and Scattering Methods; Electrical Engineering; Optical and Electronic Materials; Spektroskopie, Spektrochemie, Massenspektrometrie; Wissenschaftliche Ausstattung, Experimente und Techniken; Materialwissenschaft / Aggregatzustände; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Elektrotechnik; Elektronische Geräte und Materialien; BC; EA

Numerical Simulations and Phenomenology: Invited Papers: Monte Carlo Simulations of Surfaces and Interfaces in Materials; K. Binder. Continuum Diffuse-Interface Model for Modeling Microstructural Stability; L.Q. Chen, et al. Atomistic Studies of the Structure of Grain Boundaries and Dislocations; V. Vitek. Dislocation Patterns: Experiment, Theory and Simulation; L.P. Kubin. Contributed Papers: Continuous Phase Transitions at Surfaces of CuAu Alloy Models: A Monte Carlo Study of Surface Induced Order and Disorder; W. Schweika, et al. Surface Ordering and Surface Segregation in Binary Alloys; F. Schmid. Relaxed Monte Carlo Simulations On Au-Ni Alloy; R. Tétot, A. Finel. Continuous Monte Carlo Simulation of Surfaces and of Interfaces of Mismatched Crystals; J. Baker, P.A. Lindgard. Electronic Structure Theories: Invited Papers: Selfconsistent Green's Function Method for Random Surfaces and Interfaces; J. Kudrnovsky, et al. Electronic Structure and Physical Properties; I. Mertig. Classical and First Principles Molecular Dynamics Simulations in Material Science: Application to Structural and Dynamical Properties of Free and Supported Clusters; C. Massobrio, P. Blandin. Contributed Papers: New Tight-binding Methodology for Calculating Total Energy of Solids; D.A. Papaconstantopoulos, M.J. Mehl. Contributions to the Total Energy of Random Alloys; J.S. Faulkner, et al. Competing Mechanisms for Ordering Tendencies in Fcc CuAuZn and Fcc AuFe Alloys; D.D. Johnson, et al. A Novel Full Potential Contracted Plane Wave; (FCPW) Method for Electronic Structure Calculations on Complex Materials; L. Fritsche, et al. EffectiveIsingHamiltonian for Surfaces of Metallic Alloys; V. Drchal, et al. Invited Papers: TEM Characterization of Structural Defects; G.V. Tendeloo. Dislocations and the Plasticity of Crystals; P. Veyssière. Mechanical Properties of TiAl and TiAlbase Alloys; K. Koshida, et al. Structureproperty Relationship of Metal-Ceramic Interfaces; J.Th.D. De Hosson, et al. Contributed Papers: Distribution of Dislocations and Dislocation Widths; V. Paidar. An Atomistic Study of The Image Force on a Dislocation in a Bimaterial; P. Beauchamp, et al. Slip Induced Configurational Energy Change in Binary Alloys B. Schönfeld, P. Schwander. Cyclic Creep Deformation Characteristics of Single Crystal of Nickel Base Superalloy CMSX3 J. Zrnik, et al. Index.

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