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Fundamentos de ciencia e ingeniería de materiales: un enfoque integrado-

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Fundamentals of Materials Science and Engineering: An Integrated Approach
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Características del artículo

Estado
Aceptable: Libro con un desgaste evidente. La tapa puede tener algunos desperfectos, pero el libro ...
ISBN
9780470125373
Subject Area
Technology & Engineering
Publication Name
Fundamentals of Materials Science and Engineering : an Integrated Approach
Publisher
Wiley & Sons, Incorporated, John
Item Length
10.2 in
Subject
Materials Science / General
Publication Year
2007
Type
Textbook
Format
Hardcover
Language
English
Item Height
1.4 in
Author
David G. Rethwisch, William D. Callister
Item Weight
0.1 Oz
Item Width
8.3 in
Number of Pages
912 Pages

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Product Information

Callister and Rethwisch's Fundamentals of Materials Science and Engineering   third edition continues to take the integrated approach to the organization of topics.  That is, one specific structure, characteristic, or property type at a time is discussed for all three basic material types-viz. metals, ceramics, and polymeric materials.  This order of presentation allows for the early introduction of non-metals and supports the engineer's role in choosing materials based upon their characteristics.

Product Identifiers

Publisher
Wiley & Sons, Incorporated, John
ISBN-10
0470125373
ISBN-13
9780470125373
eBay Product ID (ePID)
60659225

Product Key Features

Number of Pages
912 Pages
Language
English
Publication Name
Fundamentals of Materials Science and Engineering : an Integrated Approach
Publication Year
2007
Subject
Materials Science / General
Type
Textbook
Subject Area
Technology & Engineering
Author
David G. Rethwisch, William D. Callister
Format
Hardcover

Dimensions

Item Height
1.4 in
Item Weight
0.1 Oz
Item Length
10.2 in
Item Width
8.3 in
Weight
59.8 Oz

Additional Product Features

Edition Number
3
Intended Audience
College Audience
LCCN
2007-040687
Dewey Edition
23
Publication Date
2007-12-10
Illustrated
Yes
Dewey Decimal
620.1/1, 620.11
Lc Classification Number
Ta403.C227 2007
Table of Content
List Of Symbols. 1. Introduction. Learning Objectives. 1.1 Historical Perspective. 1.2 Materials Science and Engineering. 1.3 Why Study Materials Science and Engineering? 1.4 Classification of Materials. 1.5 Advanced Materials. 1.6 Modern Materials Needs. References. Questions. 2. Atomic Structure and Interatomic Bonding. Learning Objectives. 2.1 Introduction. Atomic Structure. 2.2 Fundamental Concepts. 2.3 Electrons in Atoms. 2.4 The Periodic Table. Atomic Bonding in Solids. 2.5 Bonding Forces and Energies. 2.6 Primary Interatomic Bonds. 2.7 Secondary Bonding or van der Waals Bonding. 2.8 Molecules. Summary. Important Terms and Concepts. References. Questions and Problems. 3. Structures of Metals and Ceramics. Learning Objectives. 3.1 Introduction. Crystal Structures. 3.2 Fundamental Concepts. 3.3 Unit Cells. 3.4 Metallic Crystal Structures. 3.5 Density Computations-Metals. 3.6 Ceramic Crystal Structures. 3.7 Density Computations-Ceramics. 3.8 Silicate Ceramics. 3.9 Carbon. 3.10 Polymorphism and Allotropy. 3.11 Crystal Systems. Crystallographic Points, Directions, and Planes. 3.12 Point Coordinates. 3.13 Crystallographic Directions. 3.14 Crystallographic Planes. 3.15 Linear and Planar Densities. 3.16 Close-Packed Crystal Structures. Crystalline And Noncrystalline Materials. 3.17 Single Crystals. 3.18 Polycrystalline Materials. 3.19 Anisotropy. 3.20 X-Ray Diffraction: Determination of Crystal Structures. 3.21 Noncrystalline Solids. Summary. Important Terms and Concepts. References. Questions and Problems. 4. Polymer Structures. Learning Objectives. 4.1 Introduction. 4.2 Hydrocarbon Molecules. 4.3 Polymer Molecules. 4.4 The Chemistry of Polymer Molecules. 4.5 Molecular Weight. 4.6 Molecular Shape. 4.7 Molecular Structure. 4.8 Molecular Configurations. 4.9 Thermoplastic and Thermosetting Polymers. 4.10 Copolymers. 4.11 Polymer Crystallinity. 4.12 Polymer Crystals. Summary. Important Terms and Concepts. References. Questions and Problems. 5. Imperfections in Solids. Learning Objectives. 5.1 Introduction. Point Defects. 5.2 Point Defects in Metals. 5.3 Point Defects in Ceramics. 5.4 Impurities in Solids. 5.5 Point Defects in Polymers. 5.6 Specification of Composition. Miscellaneous Imperfections. 5.7 Dislocations-Linear Defects. 5.8 Interfacial Defects. 5.9 Bulk or Volume Defects. 5.10 Atomic Vibrations. Microscopic Examination. 5.11 General. 5.12 Microscopic Techniques. 5.13 Grain Size Determination. Summary. Important Terms and Concepts. References. Questions and Problems. 6. Diffusion. Learning Objectives. 6.1 Introduction. 6.2 Diffusion Mechanisms. 6.3 Steady-State Diffusion. 6.4 Nonsteady-State Diffusion. 6.5 Factors That Influence Diffusion. 6.6 Other Diffusion Paths. 6.7 Diffusion in Ionic and Polymeric Materials. Summary. Important Terms and Concepts. References. Questions and Problems. 7. Mechanical Properties. Learning Objectives. 7.1 Introduction. 7.2 Concepts of Stress and Strain. Elastic Deformation. 7.3 Stress-Strain Behavior. 7.4 Anelasticity. 7.5 Elastic Properties of Materials. Mechanical Behavior-Metals. 7.6 Tensile Properties. 7.7 True Stress and Strain. 7.8 E
Copyright Date
2008

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Goodwill Industries of the Valleys
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