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Keywords: material science
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15th Wear of Materials
Blau2005
These proceedings of the 15th International Conference on Wear of Materials focus on the friction and wear of materials in various applications under different environments from the nanometer scale to the meter scale.

The conference provides a unique international forum for researchers and practitioners from different disciplines to exchange latest results. Coverage includes:

 Wear assessment and monitoring
 Wear modeling, mechanisms, mapping and prediction
 Wear-corrosion testing and control
 Surface engineering for wear and wear-corrosion control
 Development of new wear test methods and wear test methodologies
 Wear of materials for biomedical applications
 Wear of non-equilibrium materials: from atomic dimensions to the micro-scale
 Wear of hard and superhard materials
 Wear of materials in the earthmoving, minerals processing and mining industries
Elsevier ScienceISBN-10: 0080447368
ISBN-13: 9780080447360
  PGS: 1600List: 488.00     YOUR PRICE: 463.60

4M 2006 - Second International Conference on Multi-Material Micro Manufacture
Fillon2006
This work covers the latest state-of-the-art research results from leading European researchers in advanced micro technologies for batch processing of metals, polymers, and ceramics, and the development of new production platforms for micro systems-based products.

These contributions are from leading authors at a platform endorsed and funded by the European Union R&D community, as well as leading universities, and independent research and corporate organizations. This comprehensive collection of indexed and peer reviewed articles contains a CD with search functionality.

* Contains authoritative papers that reflect the latest developments in micro technologies and micro systems-based products
* Includes a user-friendly CD Rom with search functionality
Elsevier ScienceISBN-10: 0080452639
ISBN-13: 9780080452630
  PGS: 420List: 343.00     YOUR PRICE: 325.85

A New Look At Authentic Materials: The 1995 McGraw-Hill Teleconference, 1st Ed.
McGraw-Hill1997
"This video, filmed in 1995, is the second of the McGraw-Hill Satellite Teleconferences on Topics in Second Language Acquisition. The focus of this video is on the importance and methods of using authentic materials in the foreign language classroom. Panelists include moderator Gerard L. Ervin, Ohio State University (Emeritus); Wilga Rivers, Harvard University (Emerita); June Phillips, Weber State University; Robert J. Blake, University of California--Davis; Robert Di Donato, Miami University--Ohio; Ray Elliott, University of Texas--Arlington; Kathy Heilenman, University of Iowa; and Yasu-Hiko Tohsaku, University of California--San Diego."
McGraw-Hill Humanities/Social Sciences/LISBN-10: 0070794766
ISBN-13: 9780070794764
  PGS: N/AList: 13.75     YOUR PRICE: 13.06

Advanced civil infrastructure materials: Science, mechanics and applications
Wu, Hwai Chung2006
CRC - TAYLOR & FRANCISHISBN-10: 0849334772
ISBN-13: 9780849334771
  PGS: 360List: 239.95     YOUR PRICE: 227.95

Advanced Machining Processes of Metallic Materials, Theory, Modelling and Applications
Grzesik2008
Elsevier ScienceHISBN-10: 0080445349
ISBN-13: 9780080445342
  PGS: N/AList: 228.00     YOUR PRICE: 216.60

Advanced Materials for Interconnections
Gessner1997
The conference "Advanced Materials for Interconnections" took place in Strasbourg on 4-7 June 1996 hosted by the EMRS Society. Based on the recent trends in microelectronics the main topics of the conference were new materials for interconnects like special aluminum alloys, tungsten and copper as well as low k dielectric materials.

64 Papers were presented at the conference and 51 of these are contained as full length papers within this volume of Microelectronic Engineering.

The proceedings are divided into 5 chapters. Chapter 1 related to Metallization discusses cluster equipment for IC manufacturing, copper advanced technology, gap filling, mechanical reliability, deposition technology, electroless and electro-plating, copper metallization copper interconnects and patterning of aluminum. Chapter 2, Process Integration, discusses multilevel interconnect, study on thin-film SOI devices, wet cleanings, influence of material characteristics and deposition processes, copper contamination and metallization, plasma behaviour, CMP processes, sub-micron inverse metallisation, interconnect formation and mechanical polishing investigations. Chapter 3 covers Barriers, and chapter 4 studies, evaluates and monitors Dielectrics. The final chapter looks at modelling comparisons.
Elsevier ScienceHISBN-10: 0444205071
ISBN-13: 9780444205070
  PGS: N/AList: 327.00     YOUR PRICE: 310.65

Advanced Materials for Water Handling: Composites and Thermoplastics
Scott2000
Rapid evolution is taking place in the water market world wide - driven by increased consumer demand allied to the rarefraction of clean water. The inherent characteristics of composites materials associated with current materials and production technology is allowing the increased use of previously high cost materials and processes at ever decreasing costs.

The Handbook is designed to bring specifiers up to speed with these materials and the new areas of application associated with them, exploring the scope, performance, cost effectiveness and environmental and legislative consequences of their use.
Elsevier ScienceHISBN-10: 185617350X
ISBN-13: 9781856173506
  PGS: 500List: 358.00     YOUR PRICE: 340.10

Advanced Mechanics of Composite Materials, 2nd Ed.
Not Listed2007
Composite materials have been representing most significant breakthroughs in various industrial applications, particularly in aerospace structures, during the past thirty five years. The primary goal of Advanced Mechanics of Composite Materials is the combined presentation of advanced mechanics, manufacturing technology, and analysis of composite materials. This approach lets the engineer take into account the essential mechanical properties of the material itself and special features of practical implementation, including manufacturing technology, experimental results, and design characteristics. Giving complete coverage of the topic: from basics and fundamentals to the advanced analysis including practical design and engineering applications. At the same time including a detailed and comprehensive coverage of the contemporary theoretical models at the micro- and macro- levels of material structure, practical methods and approaches, experimental results, and optimisation of composite material properties and component performance. The authors present the results of more than 30 year practical experience in the field of design and analysis of composite materials and structures.

* Eight chapters progressively covering all structural levels of composite materials from their components through elementary plies and layers to laminates
* Detailed presentation of advanced mechanics of composite materials
* Emphasis on nonlinear material models (elasticity, plasticity, creep) and structural nonlinearity
Elsevier ScienceISBN-10: 0080453724
ISBN-13: 9780080453729
  PGS: 448List: 285.00     YOUR PRICE: 270.75

Advanced Processing and Manufacturing Technologies for Structural and Multifunctional Materials II: Ceramic Engineering and Science
Editor: Tatsuki Ohji; Editor: Mrityunj2008
CONTENTS: Preface.@pIntroduction.@pDevelopment and Characterization of the Bonding and Integration Technologies Needed for Fabricating Silicon Carbide Based Injector Components (Michael C. Halbig and Mrityunjay Singh).@pBonding and Integration of C-C Composite to C
Wiley-American Ceramic SocietyISBN-10: 0470344997
ISBN-13: 9780470344996
  PGS: N/AList: 79.95     YOUR PRICE: 75.95

Advances in Nanoporous Materials, Volume1
Ernst2009
Elsevier ScienceISBN-10: 0444531793
ISBN-13: 9780444531797
  PGS: 336List: 260.00     YOUR PRICE: 247.00

An Introduction to Aspects of Thermodynamics and Kinetics Relevant to Materials Science, 3th Ed.
Not Listed2007
This book is based on a set of notes developed over many years for an introductory course taught to seniors and entering graduate students in materials science. An Introduction to Aspects of Thermodynamics and Kinetics Relevant to Materials Science is about the application of thermodynamics and kinetics to solve problems within Materials Science. Emphasis is to provide a physical understanding of the phenomenon under discussion, with the mathematics presented as a guide.
The problems are used to provide practice in quantitative application of principles, and also to give examples of applications of the general subject matter to problems having current interest and to emphasize the important physical concepts.
End of chapter problems are included, as are references, and bibliography to reinforce the text. This book provides students with the theory and mathematics to understand the important physical understanding of phenomena.

* Based on a set of notes developed over many years for an introductory course taught to seniors and entering graduate students in materials science
* Provides students with the theory and mathematics to understand the important physical understanding of phenomena
* Includes end of chapter problems, references, and bibliography to reinforce the text
Elsevier ScienceISBN-10: 008046615X
ISBN-13: 9780080466156
  PGS: 364List: 207.00     YOUR PRICE: 196.65

An Introduction to Materials Engineering and Science: For Chemical and Materials Engineers
Brian S. Mitchell (Tulane Univ.)2003
Preface. Acknowledgments. 1 The Structure of Materials. 1.0 Introduction and Objectives. 1.1 Structure of Metals and Alloys. 1.2 Structure of Ceramics and Glasses. 1.3 Structure of Polymers. 1.4 Structure of Composites. 1.5 Structure of Biologics. References. Problems. 2 Thermodynamics of Condensed Phases. 2.0 Introduction and Objectives. 2.1 Thermodynamics of Metals and Alloys. 2.2 Thermodynamics of Ceramics and Glasses. 2.3 Thermodynamics of Polymers. 2.4 Thermodynamics of Composites. 2.5 Thermodynamics of Biologics. References. Problems. 3 Kinetic Processes in Materials. 3.0 Introduction and Objectives. 3.1 Kinetic Processes in Metals and Alloys. 3.2 Kinetic Processes in Ceramics and Glasses*. 3.3 Kinetic Processes in Polymers. 3.4 Kinetic Processes in Composites*. 3.5 Kinetic Processes in Biologics*. References. Problems. 4 Transport Properties of Materials. 4.0 Introduction and Objectives. 4.1 Momentum Transport Properties of Materials*. 4.2 Heat Transport Properties of Materials. 4.3 Mass Transport Properties of Materials*. References. Problems. 5 Mechanics of Materials. 5.0 Introduction and Objectives. 5.1 Mechanics of Metals and Alloys. 5.2 Mechanics of Ceramics and Glasses. 5.3 Mechanics of Polymers. 5.4 Mechanics of Composites. 5.5 Mechanics of Biologics. References. Problems. 6 Electrical, Magnetic, and Optical Properties of Materials. 6.1 Electrical Properties of Materials. 6.2 Magnetic Properties of Materials. 6.3 Optical Properties of Materials. References. Problems. 7 Processing of Materials. 7.0 Introduction. 7.1 Processing of Metals and Alloys. 7.2 Processing of Ceramics and Glasses. 7.3 Processing of Polymers. 7.4 Processing of Composites. 7.5 Processing of Biologics. References. Problems. 8 Case Studies in Materials Selection. 8.0 Introduction and Objectives. 8.1 Selection of Metals for a Compressed Air Tank. 8.2 Selection of Ceramic Piping for Coal Slurries in a Coal Liquefaction Plant. 8.3 Selection of Polymers for Packaging. 8.4 Selection of a Composite for an Automotive Drive Shaft. 8.5 Selection of Materials as Tooth Coatings. References. Problems. Appendix 1: Energy Values for Single Bonds. Appendix 2: Structure of Some Common Polymers. Appendix 3: Composition of Common Alloys. Appendix 4: Surface and Interfacial Energies. Appendix 5: Thermal Conductivities of Selected Materials. Appendix 6: Diffusivities in Selected Systems. Appendix 7: Mechanical Properties of Selected Materials. Appendix 8: Electrical Conductivity of Selected Materials. Appendix 9: Refractive Index of Selected Materials. Answers to Selected Problems. Index. *Sections marked with an asterisk can be omitted in an introductory course.
Wiley-InterscienceHISBN-10: 0471436232
ISBN-13: 9780471436232
  PGS: N/AList: 169.00     YOUR PRICE: 160.55

An Introduction to Materials Science and Engineering
Fischer2008
Academic Press - ELSEVIERISBN-10: 0123735874
ISBN-13: 9780123735874
  PGS: 600List: 99.95     YOUR PRICE: 94.95

APPLIED MATERIALS SCIENCE: Applications of Engineering Materials in Structural, Electronics, Thermal & Other Industries
Chung, Deborah D.L.2001
INTRODUCTION TO MATERIALS APPLICATIONS Classes of Materials Structural Applications Electronic Applications Thermal Applications Electrochemical Applications Environmental Applications Biomedical Applications MATERIALS FOR THERMAL CONDUCTION Introduction Materials of High Thermal Conductivity Thermal Interface Materials POLYMER-MATRIX COMPOSITES FOR MICROELECTRONICS Introduction Applications in Microelectronics Polymer-Matrix Composites MATERIALS FOR ELECTROMAGNETIC INTERFERENCE SHIELDING Introduction Mechanisms of Shielding Composite Materials for Shielding Emerging Materials for Shielding CEMENT-BASED ELECTRONICS Introduction Background on Cement-Matrix Composites Cement-Based Electrical Circuit Elements Cement-Based Sensors Cement-Based Thermoelectric Device SELF-SENSING OF CARBON FIBER POLYMER-MATRIX STRUCTURAL COMPOSITES Introduction Background Sensing Strain Sensing Damage Sensing Temperature Sensing Bond Degradation Sensing Structural Transitions Sensing Composite Fabrication Process STRUCTURAL HEALTH MONITORING BY ELECTRICAL RESISTANCE MEASUREMENT Introduction Carbon Fiber Polymer-Matrix Structural Composites Cement-Matrix Composites Joints MODIFICATION OF THE SURFACE OF CARBON FIBERS FOR USE AS A REINFORCEMENT IN COMPOSITE MATERIALS Introduction to Surface Modification Introduction to Carbon Fiber Composites Surface Modification Of Carbon Fibers for Polymer-Matrix Composites Surface Modification of Carbon Fibers for Metal-Matrix Composites CORROSION CONTROL OF STEEL REINFORCED CONCRETE Introduction Steel Surface Treatment Admixtures in Concrete Surface Coating on Concrete Cathodic Protection Steel Replacement APPLICATIONS OF SUBMICRON DIAMETER CARBON FILAMENTS Introduction Structural Applications Electromagnetic Interference Shielding, Electromagnetic Reflection and Surface Electrical Conduction DC Electrical Conduction Field Emission Electrochemical Applications Thermal Conduction Strain Sensors Porous Carbons Catalyst Support IMPROVING CEMENT-BASED MATERIALS BY USING SILICA FUME Introduction Workability Mechanical Properties Vibration Damping Capacity Sound Absorption Freeze-Thaw Durability Abrasion Resistance Shrinkage Air Void Content and Density Permeability Steel Rebar Corrosion Resistance Alkali-Silica Reactivity Reduction Chemical Attack Resistance Bond Strength to Steel Rebar Creep Rate Coefficient of Thermal Expansion Specific Heat Thermal Conductivity Fiber Dispersion Appendix A: Electrical Behavior of Various Types of Materials Appendix B: Temperature Dependence of Electrical Resistivity Appendix C: Electrical Measurement Appendix D: Dielectric Behavior Appendix E: Electromagnetic Measurement Appendix F: Thermoelectric Behavior Appendix G: Nondestructive Evaluation Appendix H: Electrochemical Behavior Appendix I: The pn Junction Appendix J: Carbon Fibers
CRC - TAYLOR & FRANCISHISBN-10: 0849310733
ISBN-13: 9780849310737
  PGS: 238List: 134.95     YOUR PRICE: 128.20

Artifice and Artefacts: 100 Essays in Materials Science
Cahn1992
Taylor & FrancisHISBN-10: 075030152X
ISBN-13: 9780750301527
  PGS: N/AList: 62.95     YOUR PRICE: 59.80

Biomaterials and Biodegradable Polymers and Macromolecules: Current Research and Industrial Applications
Burny2005
Elsevier ScienceISBN-10: 0444205160
ISBN-13: 9780444205162
  PGS: N/AList: 397.95     YOUR PRICE: 378.05

Biomaterials Science
Ratner2004
The second edition of this bestselling title provides the most up-to-date comprehensive review of all aspects of biomaterials science by providing a balanced, insightful approach to learning biomaterials. This reference integrates a historical perspective of materials engineering principles with biological interactions of biomaterials. Also provided within are regulatory and ethical issues in addition to future directions of the field, and a state-of-the-art update of medical and biotechnological applications.

All aspects of biomaterials science are thoroughly addressed, from tissue engineering to cochlear prostheses and drug delivery systems. Over 80 contributors from academia, government and industry detail the principles of cell biology, immunology, and pathology. Focus within pertains to the clinical uses of biomaterials as components in implants, devices, and artificial organs. This reference also touches upon their uses in biotechnology as well as the characterization of the physical, chemical, biochemical and surface properties of these materials.

* Provides comprehensive coverage of principles and applications of all classes of biomaterials

* Integrates concepts of biomaterials science and biological interactions with clinical science and societal issues including law, regulation, and ethics

* Discusses successes and failures of biomaterials applications in clinical medicine and the future directions of the field

* Cover the broad spectrum of biomaterial compositions including polymers, metals, ceramics, glasses, carbons, natural materials, and composites

* Endorsed by the Society for Biomaterials
Academic Press - ELSEVIERISBN-10: 0125824637
ISBN-13: 9780125824637
  PGS: 864List: 119.00     YOUR PRICE: 113.05

Biomaterials: The Intersection of Biology and Materials Science, 1st Ed.
Temenoff, Johnna S
Mikos, Antonios G
2008
Table of Contents

 

Chapter 1: Materials for Biomedical Applications                        
Prentice Hall - PEARSONHISBN-10: 0130097101
ISBN-13: 9780130097101
  PGS: N/AList: 170.00     YOUR PRICE: 161.50

Bioscience and Bioengineering of Titanium Materials
N/A2007
This unique book about bioscience and the bioengineering of titanium materials is based on more than 1,000 published articles. It bridges the gap between the medical/dental fields and the engineering/technology areas, due to the author's unique experience in both during the last 30 years. The book covers Materials Classifications, Chemical and Electrochemical Reactions, Oxidation, Biological Reactions, Implant-related Biological Reactions, Applications, Fabri-cation Technologies, Surface Modifications, and Future Perspectives.

The information is obtained from numerous sources provided by scholars and researchers, from sources such as clinical reports, study reports, case reports, and retrospective reports on clinical evidence.

* Reviews studies of titanium materials in medical and dental applications, as reported in ~1,000 articles published over last several years
* Draws information from
Elsevier ScienceISBN-10: 008045142X
ISBN-13: 9780080451428
  PGS: 320List: 244.00     YOUR PRICE: 231.80

Biosensing Using Nanomaterials
A. Merkoci (Institut Catala de Nanotecno2009

An interdisciplinary approach to one of the hottest topics in nanotechnology and nanoscience

Biosensing Using Nanomaterials introduces novel concepts in the area of bioanalysis based on nanomaterials, opening new opportunities for basic research CONTENTS: CONTRIBUTORS.@pSERIES PREFACE.@pPREFACE.@pPART I CARBON NANOTUBES.@p1. Carbon Nanotube–Based Sensors and Biosensors (Richard G. Compton, Gregory G. Wildgoose, and Elicia L. S. Wong).@p1.1. Introduction to the Structure of Carbon Nanotubes.@p1.2. Ele

Wiley-InterscienceISBN-10: 0470183098
ISBN-13: 9780470183090
  PGS: N/AList: 153.00     YOUR PRICE: 145.35

Carbon Materials for Advanced Technologies
N/A1999
The inspiration for this book came from an American Carbon Society Workshop entitled "Carbon Materials for Advanced Technologies" which was hosted by the Oak Ridge National Laboratory in 1994. Chapter 1 contains a review of carbon materials, and emphasizes the structure and chemical bonding in the various forms of carbon, including the four allotropes diamond, graphite, carbynes, and the fullerenes. In addition, amorphous carbon and diamond films, carbon nanoparticles, and engineered carbons are discussed. The most recently discovered allotrope of carbon, i.e., the fullerenes, along with carbon nanotubes, are more fully discussed in Chapter 2, where their structure-property relations are reviewed in the context of advanced technologies for carbon based materials. The synthesis, structure, and properties of the fullerenes and nanotubes, and modification of the structure and properties through doping, are also reviewed. Potential applications of this new family of carbon materials are considered.
The manufacture and applications of adsorbent carbon fibers are discussed in Chapter 3. The manufacture, structure and properties of high performance fibers are reviewed in Chapter 4, and the manufacture and properties of vapor grown fibers and their composites are reported in Chapter 5. The properties and applications of novel low density composites developed at Oak Ridge National Laboratory are reported in Chapter 6.
Coal is an important source of energy and an abundant source of carbon. The production of engineering carbons and graphite from coal via a solvent extraction route is described in Chapter 7. Applications of activated carbons are discussed in Chapters 8-10, including their use in the automotive arena as evaporative loss emission traps (Chapter 8), and in vehicle natural gas storage tanks (Chapter 9). The application of activated carbons in adsorption heat pumps and refrigerators is discussed in Chapter 10. Chapter 11 reports the use of carbon materials in the fast growing consumer electronics application of lithium-ion batteries. The role of carbon materials in nuclear systems is discussed in Chapters 12 and 13, where fusion device and fission reactor applications, respectively, are reviewed. In Chapter 12 the major technological issues for the utilization of carbon as a plasma facing material are discussed in the context of current and future fusion tokamak devices.
The essential design features of graphite moderated reactors, (including gas-, water- and molten salt-cooled systems) are reviewed in Chapter 13, and reactor environmental effects such as radiation damage and radiolytic corrosion are discussed. The fracture behaviour of graphite is discussed in qualitative and quantitative terms in Chapter 14. The applications of Linear Elastic Fracture Mechanics and Elastic-Plastic Fracture Mechanics to graphite are reviewed and a study of the role of small flaws in nuclear graphites is reported.
Elsevier ScienceISBN-10: 0080426832
ISBN-13: 9780080426839
  PGS: N/AList: 275.00     YOUR PRICE: 261.25

Carbon-Based Materials for Micoelectronics
Fink1999
There have been great advances in our understanding and use of inorganic carbon in recent years, following the development of the vapour synthesis of diamond, the discovery of C60 molecule and the discovery of carbon nanotubes.

This issue contains the papers from the Symposium K Carbon-based Materials for Microelectronics of the European Materials Research Society meeting which was held on 16-19 June 1998, Strasbourg, France. The symposium covered fullerenes, nanotubes, diamond and amorphous carbon. It was able to show the similarities between the sp2 and sp3 forms of carbon, and between the crystalline, nano-structured and amorphous forms. Carbon is unique in having such a range of covalently bonded forms.

The symposium consisted of 34 oral papers, of which 10 were invited, and 35 poster papers. The papers in this proceedings cover many of the recent developments in carbon, for example the effect of doping on the electronic structure of nanotubes, the discovery of phosphorus doping of diamond, the surface structure and electronic structure of diamond, and the field emission properties of diamond and diamond-like carbon.

The applications of carbon lag some way behind those of other materials, but the symposium highlighted the uses or potential of carbon in xerography, in field emission displays and in photoconductivity-based sensors and radiation detectors.
Elsevier ScienceISBN-10: 0080436145
ISBN-13: 9780080436142
  PGS: N/AList: 136.95     YOUR PRICE: 130.10

Ceramics and Ceramic Composites: Materialographic Preparation
N/A1999
Ceramics and ceramic composites are now used in almost all areas of technology and have potential for even greater and more widespread applications. To make this a reality, it is increasingly necessary to understand the microstructure of the material and its relationship with properties and performance. Central to this is the characterization of the material, in particular using optical and scanning electron microscopy techniques.

This book acts as an expert guide to the various steps necessary for successful and accurate characterization of these materials including the crucially important preparation stage, the techniques used to reveal the microstructure and the analysis of the results.

In particular, the book presents fundamental information on preparing polished sections of ceramics and ceramic composites including the main steps of sampling, sectioning, mounting and impregnation, and mechanical grinding, lapping and polishing. It discusses microstructural imaging in the optical microscope (OM) and the use of the scanning electron microscope (SEM). Etching or contrast enhancement following final polishing in order to reveal the material's microstructure is also covered.

An entire chapter is devoted to material-specific preparation procedures for polished sections. These procedures take into account the properties of the ceramic or composite being examined and the purpose of the examination. They have proven to be very suitable for the respective materials and are effective for revealing the pores. The examples presented here for ceramics and ceramic composites provide polished sections of good to excellent quality for routine examination under the optical microscope. They include tips for etching and contrast enhancement, as well as microstructural images. Chapter 5 discusses the preparation of polished sections for purposes of examination and contains information on producing oblique sections and controlled removal of material. It also addresses the production of thin sections.

As a complement to the examination of the microstructure, chapter 6 provides insight into the evaluation of hardness testing indentations. Chapter 7 concludes this work with an overview of the technical literature.

Elsevier ScienceISBN-10: 044410030X
ISBN-13: 9780444100306
  PGS: N/AList: 159.00     YOUR PRICE: 151.05

Characterization of Materials, 2 Volume Set
Editor: Elton N. Kaufmann (Argonne Nati2003
Forward. Preface. Contributors. COMMON CONCEPTS. Common Concepts in Materials Characterization, Introduction. General Vacuum Techniques. Mass and Density Measurements. Thermometry. Symmetry in Crystallography. Particle Scattering. Sample Preparation for Metallography. COMPUTATION AND THEORETICAL METHODS. Computation and Theoretical Methods, Introduction. Introduction to Computation. Summary of Electronic Structure Methods. Prediction of Phase Diagrams. Simulation of Microstructural Evolution Using the Field Method. Bonding in Metals. Binary and Multicomponent Diffusion. Molecular-Dynamics Simulation of Surface Phenomena. Simulation of Chemical Vapor Deposition Processes. Magnetism in Alloys. Kinematic Diffraction of X-Rays. Dynamical Diffraction. Computation of Diffuse Intensities in Alloys. MECHANICAL TESTING. Mechanical Testing, Introduction. Tension Testing. High-Strain-Rate Testing of Materials. Fracture Toughness Testing Methods. Hardness Testing. Tribological and Wear Testing. THERMAL ANALYSIS. Thermal Analysis, Introduction. Thermal Analysis - Definitions, Codes of Practice, and Nomenclature. Thermogravimetric Analysis. Differential Thermal Analysis and Differential Scanning Calorimetry. Combustion Calorimetry. Thermal Diffusivity by the Laser Flash Technique. Simultaneous Techniques Including Analysis of Gaseous Products. ELECTRICAL AND ELECTRONIC MEASUREMENT. Electrical and Electronic Measurement, Introduction. Conductivity Measurement. Hall Effect in Semiconductors. Deep-Level Transient Spectroscopy. Carrier Lifetime: Free Carrier Absorption, Photoconductivity, and Photoluminescence. Capacitance-Voltage (C-V) Characterization of Semiconductors. Characterization of pn Junctions. MAGNETISM AND MAGNETIC MEASUREMENT. Magnetism and Magnetic Measurement, Introduction. Generation and Measurement of Magnetic Fields. Magnetic Moment and Magnetization. Theory of Magnetic Phase Transitions. Magnetometry. Thermomagnetic Analysis. Techniques to Measure Magnetic Domain Structures. Magnetotransport in Metals and Alloys. Surface Magneto-Optic Kerr Effect. ELECTROCHEMICAL TECHNIQUES. Electrochemical Techniques, Introduction. Cyclic Voltammetry. Electrochemical Techniques for Corrosion Quantification. Semiconductor Electrochemistry. Scanning Electrochemical Microscopy. The Quartz Crystal Microbalance in Electrochemistry. OPTICAL IMAGING AND SPECTROSCOPY. Optical Imaging and Spectroscopy, Introduction. Optical Microscopy. Reflected-Light Optical Microscopy. Photoluminescence Spectroscopy. Ultraviolet and Visible Absorption Spectroscopy. Raman Spectroscopy of Solids. Ultraviolet Photoelectron Spectroscopy. Ellipsometry. Impulsive Stimulated Thermal Scattering. RESONANCE METHODS. Resonance Methods, Introduction. Nuclear Magnetic Resonance Imaging. Nuclear Quadrupole Resonance. Electron Paramagnetic Resonance Spectroscopy. Cyclotron Resonance. Mossbauer Spectrometry. X-RAY TECHNIQUES. X-Ray Techniques, Introduction. X-Ray Powder Diffraction. XAFS Spectroscopy. X-Ray and Neutron Diffuse Scattering Measurements. Resonant Scattering Techniques. Magnetic X-Ray Scattering. X-Ray Microprobe for Fluorescence and Diffraction Analysis. X-Ray Magnetic Circular Dichroism. Surface X-Ray Diffraction. X-Ray Diffraction Techniques for Liquid Surfaces and Monomolecular Layers. ELECTRON TECHNIQUES. Electron Techniques, Introduction. Scanning Electron Microscopy. Transmission Electron Microscopy. Scanning Transmission Electron Microscopy: Z-Contrast Imaging. Scanning Tunneling Microscopy. Low-Energy Electron Diffraction. Energy-Dispersive Spectrometry. Auger Electron Spectroscopy. ION-BEAM TECHNIQUES. Ion-Beam Techniques, Introduction. High Energy Ion-Beam Analysis. Elastic Ion Scattering for Composition Analysis. Nuclear Reaction Analysis and Proton-Induced Gamma Ray Emission. Particle-Induced X-Ray Emission. Radiation Effects Microscopy. Trace Element Accelerator Mass Spectrometry. Introduction to Medium-Energy Ion Beam Analysis. Medium-Energy Backscattering and Forward-Recoil Spectrometry. Heavy-Ion Backscattering Spectrometry. NEUTRON TECHNIQUES. Neutron Techniques, Introduction. Neutron Powder Diffraction. Single-Crystal Neutron Diffraction. Phonon Studies. Magnetic Neutron Scattering. Appendices. Index.
Wiley-InterscienceHISBN-10: 0471268828
ISBN-13: 9780471268826
  PGS: 1392List: 625.00     YOUR PRICE: 593.75

Chemistry of Zeolites and Related Porous Materials: Synthesis and Structure
Ruren Xu (Jilin University); Wenqin Pang2007
1 Introduction.@p2 Structure Chemistry of Microporous Materials.@p3 Synthetic Chemistry of Microporous Compounds (I)-Fundamentals and Synthetic Routes.@p4 Synthetic Chemistry of Microporous Compounds (II) - Special Compositions, Structures and Morphologies.@p5 Crystallization of Microporous Compounds.@p6 Preparation, Secondary Synthesis and Modification of Zeolites.@p7 Towards Rational Design and Synthesis of Inorganic Microporous Materials.@p8 Synthesis, Structure and Characterization of Mesoporous Materials.@p9 Porous Host-Guest Advanced Materials.
Wiley-InterscienceISBN-10: 0470822333
ISBN-13: 9780470822333
  PGS: 616List: 247.00     YOUR PRICE: 234.65

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