{"product_id":"concise-encyclopedia-of-materials-characterization-hardback-9780080445472","title":"Concise Encyclopedia of Materials Characterization (Hardback) 9780080445472","description":"\u003cfont face=\"Georgia\"\u003e\r\n\u003cp\u003e\u003cfont size=\"6\"\u003eConcise Encyclopedia of Materials Characterization\u003c\/font\u003e\u003cbr\u003e\r\n\r\n\r\n\u003c\/p\u003e\n\u003cp\u003e\u003cem\u003eAn in-depth exploration of the characterization techniques necessary to accurately determine the composition, degree of perfection, physical and mechanical characteristics of materials\u003c\/em\u003e\u003c\/p\u003e\r\n\r\n\r\n\u003cp\u003e\u003cfont size=\"4\"\u003eRobert Cahn (Edited by)\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003e9780080445472, Elsevier Science\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003eHardback, published 17 December 2004\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003e1120 pages\u003cbr\u003e24.1 x 16.5 x 5.1 cm, 2.34 kg\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\r\n\r\n\r\n\r\n\u003cp align=\"justify\"\u003e\u003cstrong\u003e\u003cfont size=\"3\"\u003e\u003cp\u003eTo use materials effectively, their composition, physical and mechanical characteristics, and microstructure must be accurately determined. The second edition of \u003ci\u003eConcise Encyclopedia of Materials Characterization \u003c\/i\u003ecovers the wide range of characterization techniques necessary to achieve this.\u003c\/p\u003e  \u003cp\u003eWith over 130 articles taken from the award-winning \u003ci\u003eEncyclopedia of Materials: Science and Technology\u003c\/i\u003e, containing revisions and updates not available in the original set, this concise encyclopedia is an ideal quick reference for materials scientists, chemists and engineers.\u003c\/p\u003e\u003c\/font\u003e\u003c\/strong\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003eEditor's Preface – newly written\u003cbr\u003eAlphabetical List of Articles\u003cbr\u003eAn Introduction to Investigation and Characterization of Materials\u003cbr\u003eAcoustic Microscopy \u003cbr\u003eAdhesives: Tests for Mechanical Properties \u003cbr\u003eAmorphous Materials: Electron Spin Resonance \u003cbr\u003eAmorphous Materials: Nuclear Magnetic Resonance,\u003cbr\u003eAmorphous Materials: Nuclear Spin Relaxation \u003cbr\u003eAmorphous Materials: Small-Angle Scattering \u003cbr\u003eAmorphous Materials: Vibrational Spectroscopy \u003cbr\u003eAmorphous Materials: X-ray Absorption Spectroscopy \u003cbr\u003eAnalytical Transmission Electron Microscopy \u003cbr\u003eAnodization Microscopy \u003cbr\u003eArt Forgeries: Scientific Detection \u003cbr\u003eAtomic Force Microscopy \u003cbr\u003eAuger Electron Microscopy \u003cbr\u003eAuger Microscopy: Angular Distribution \u003cbr\u003eBrittle Materials: Strength Testing \u003cbr\u003eCeramics, Cathodoluminescence Analysis of \u003cbr\u003eCeramics: Fracture Toughness Testing \u003cbr\u003eCeramic Powders: Packing Characterization \u003cbr\u003eChannelling-Enhanced Microanalysis \u003cbr\u003eChemical Analysis of Solid Surfaces \u003cbr\u003eCombinatorial Screening \u003cbr\u003eComposite Materials: Nondestructive Evaluation \u003cbr\u003eCompton Scattering \u003cbr\u003eConfocal Optical Microscopy \u003cbr\u003eCorrosion and Oxidation Study Techniques \u003cbr\u003eCorrosion: Test Methods \u003cbr\u003eCrack Growth Measurement \u003cbr\u003eCreep by Indentation \u003cbr\u003eCreep, Creep Rupture and Stress Relaxation Testing\u003cbr\u003eCreep-Fatigue Interaction Testing \u003cbr\u003eDating Archaeological Materials \u003cbr\u003eDeep Level Transient Spectroscopy \u003cbr\u003eDepth Profiling \u003cbr\u003eDiffusion: Novel Measurement Methods \u003cbr\u003e*Diffusion Multiple Screening: Phase Diagram Mapping and Related Studies \u003cbr\u003eDislocations: Experimental Observation \u003cbr\u003eElastic Modulus Measurement \u003cbr\u003eElastomers: Spectroscopic Characterization \u003cbr\u003eElastomers: Tests for Mechanical Properties \u003cbr\u003eElectron Diffraction \u003cbr\u003eElectron Diffraction, Low-Energy \u003cbr\u003eElectron Energy Loss Spectrometry \u003cbr\u003eElectron Microscope Analysis of Defect Clusters, Voids and Bubbles \u003cbr\u003eElectron Microscopy, High-Voltage \u003cbr\u003eElectron Spectroscopy for Chemical Analysis \u003cbr\u003eElectron Spin Resonance \u003cbr\u003eElectron Tunnelling Spectroscopy \u003cbr\u003eElectronic Raman Spectroscopy \u003cbr\u003eEllipsometry EMSAT, p. 2755\u003cbr\u003eFatigue(Multiaxial) Testing \u003cbr\u003eFatigue Testing \u003cbr\u003eFatigue Testing: Thermal and Thermomechanical \u003cbr\u003eField-Ion Microscopy \u003cbr\u003eField-Ion Microscopy: Atom Probe Microanalysis \u003cbr\u003eField-Ion Microscopy: Observation of Radiation Effects \u003cbr\u003eFractal Analysis \u003cbr\u003eFracture of Polymeric Materials \u003cbr\u003eFracture Toughness Testing of Metallic Materials\u003cbr\u003eGamma Radiography \u003cbr\u003eGamma-Ray Diffraction \u003cbr\u003eGas and Liquid Chromatography \u003cbr\u003eGrain-Boundary Geometry: Measurement \u003cbr\u003eGrain-Size: Nondestructive Evaluation \u003cbr\u003eHardness Testing \u003cbr\u003eHigh-Resolution Electron Micrsocopy \u003cbr\u003eHigh-Resolution Electron Microscopy of Interfaces\u003cbr\u003eHydrogen as a Metallurgical Probe \u003cbr\u003eInfrared Spectroscopy \u003cbr\u003eImpact Testing \u003cbr\u003eIn-Reactor Creep Testing: Techniques \u003cbr\u003eIon Backscattering Analysis \u003cbr\u003eIon Chromatography \u003cbr\u003eJunction Transient Spectroscopy \u003cbr\u003eKerr Microscopy \u003cbr\u003eLaser Microprobe Mass Spectrometry \u003cbr\u003eLaser Sampling Inductively Coupled Mass Spectrometry\u003cbr\u003eLiquid Chromatography Mass Spectrometry \u003cbr\u003eLuminescence Imaging of Ceramics \u003cbr\u003eLow-Energy Electron Diffraction \u003cbr\u003eMagnetic Force Microscopy \u003cbr\u003eMagnetic Materials: Measurements \u003cbr\u003eMagnetic Materials: Transmission Electron Microscopy \u003cbr\u003eMagnetic Measurements: Pulse Field \u003cbr\u003eMagnetic Measurements: Quasistatic and AC \u003cbr\u003eMagnetic Recording Measurements \u003cbr\u003eMagnetic Systems: De Haas van Alphen Studies of Fermi Surface \u003cbr\u003eMagnetism: Applications of Synchrotron Radiation\u003cbr\u003eMechanical Properties Microprobe \u003cbr\u003eMechanical Testing at High Strain Rates \u003cbr\u003eMechanical Testing Methods of Fibers and Composites\u003cbr\u003eMechanical Testing of Ceramics \u003cbr\u003eMechanical Testing: Overview \u003cbr\u003eMicroengineering of Materials: Characterization \u003cbr\u003eMicrostructural Evolution: Computer Simulation \u003cbr\u003eMicrotextural Analysis \u003cbr\u003eMössbauer Spectrometry \u003cbr\u003eNanoindentation Techniques \u003cbr\u003eNanometer-Scale Evaluation of Advanced Materials by Using Positrons \u003cbr\u003eNeutron Activation Analysis \u003cbr\u003eNeutron Diffraction \u003cbr\u003eNeutron Radiography \u003cbr\u003eNeutron Reflectometry for the Study of Absorption from Solution at Solid Surfaces, \u003cbr\u003eNuclear Magnetic Resonance Spectroscopy \u003cbr\u003eOptical Calorimetry \u003cbr\u003eOptical Emission Spectroscopy \u003cbr\u003eOptical Microscopy \u003cbr\u003eOrganic Mass Spectrometry \u003cbr\u003eOxide Surfaces by STM, Study of \u003cbr\u003ePaper and Paperboard: Destructive Mechanical Testing \u003cbr\u003ePaper and Paperboard: Nondestructive Evaluation \u003cbr\u003ePaper Surfaces: Subjective Evaluation \u003cbr\u003eParticle-Induced X-Ray Emission \u003cbr\u003ePerturbed Angular Correlations (PAC) \u003cbr\u003ePhase Diagrams and Phase Stability: Calculations\u003cbr\u003ePhotoelasticity \u003cbr\u003ePhotoelectron Diffraction \u003cbr\u003ePole Figures and Orientation Distribution Functions\u003cbr\u003ePolymer Dielectric Properties: Test Methods \u003cbr\u003ePolymers: Electron Micsocopy \u003cbr\u003ePolymers: Light Microscopy \u003cbr\u003ePolymers: Molecular Weight and its Distribution \u003cbr\u003ePolymers: Neutron Scattering \u003cbr\u003ePolymers: Raman Spectroscopy \u003cbr\u003ePolymers: Tests for Degradation and Stabilisation\u003cbr\u003ePolymers: Tests for Flammability \u003cbr\u003ePolymers: Tests for Mechanical Properties \u003cbr\u003ePolymers: Tests for Thermal Properties \u003cbr\u003ePolymers: Thermal Analysis \u003cbr\u003ePolymers: X-Ray Scattering \u003cbr\u003ePorosity: Characterization and Investigation \u003cbr\u003ePositron Annihilation Spectroscopy of Defects in Metals \u003cbr\u003ePositron-Annihilation Techniques, Advanced, for Materials Research\u003cbr\u003ePowder Characterization \u003cbr\u003ePowder Mechanics \u003cbr\u003eRaman Spectroscopy and Microscopy \u003cbr\u003eReflection Electron Microscopy Concise, p. 409\u003cbr\u003eResidual Stresses: Measurement by Diffraction \u003cbr\u003eResidual Stresses: Measurement by Raman Shift \u003cbr\u003eResidual Stresses: Measurement using Magnetoelastic Effects \u003cbr\u003eResidual Stresses: Measurement using Neutron Diffraction \u003cbr\u003eScanning Electron Microscopy \u003cbr\u003eScanning SQUID Microscope \u003cbr\u003eScanning Tunneling Microscopy and Spectroscopy \u003cbr\u003eSecondary–Ion Mass Spectrometry \u003cbr\u003eSemiconductor Materials: Characterization by Etching \u003cbr\u003eSemiconducting Materials: Electron Microscopy \u003cbr\u003eSemiconductors, Electrical Evaluation of \u003cbr\u003eSemiconductors, Local Vibrational Mode Spectroscopy \u003cbr\u003eSemiconductors, Raman Spectroscopy of \u003cbr\u003eSemiconductors, Scanning Photoluminescence \u003cbr\u003eSemicrystalline Polymers: Lamellar Morphology by SAXS \u003cbr\u003eSingle-Crystal X-Ray Diffraction \u003cbr\u003eSmall-Specimen Mechanical Testing \u003cbr\u003eSolid-State Nuclear Track Detectors: Applications\u003cbr\u003eSolid State: Study Using Muon Beams \u003cbr\u003eSpark-Source Mass Spectrography \u003cbr\u003eSQUIDS: Magnetic Microscopy EMSAT, p. 8787\u003cbr\u003eSQUIDS: The Instrument \u003cbr\u003eStress Distribution: Analysis Using Thermoelastic Effect \u003cbr\u003eSuperconducting Materials: Measurements \u003cbr\u003eSurface Chemistry: Electron Yield Spectroscopy \u003cbr\u003eSurface Chemistry: EXAFS \u003cbr\u003eSurface Evaluation by Atomic Force Microscopy \u003cbr\u003eSurface Photochemistry \u003cbr\u003eThermal Transport Properties, Measurement of \u003cbr\u003eTexture: Nondestructive Characterization \u003cbr\u003eThermal Analysis: An Overview \u003cbr\u003eThermal Analysis: More Recent Developments \u003cbr\u003eThermal Wave Imaging \u003cbr\u003eThermally Contracting Materials: Characterisation\u003cbr\u003eThermodynamic Activity: Measurement \u003cbr\u003eThermoluminescence \u003cbr\u003eThermophysical Measurements, Subsecond \u003cbr\u003eThin Films: Characterization by X-Rays \u003cbr\u003eThin Films: In-Situ Stress Measurement of \u003cbr\u003eThin Films: Mechanical Testing \u003cbr\u003eThin Films: Stress Measurement Techniques \u003cbr\u003eTransmission Electron Microscopy \u003cbr\u003eVibrothermography \u003cbr\u003eViscoelasticity\/Anelasticity \u003cbr\u003eWood: Acoustic Emission and Acousto-Ultrasonic Characteristics \u003cbr\u003eX-Ray Absorption Spectroscopy: EXAFS and XANES Techniques \u003cbr\u003eX-Ray and Neutron Diffraction Studies of Amorphous Solids \u003cbr\u003eX-Ray and Neutron Diffuse Scattering of Radiation-Induced Defects \u003cbr\u003eX-Ray Diffraction, Time-Resolved \u003cbr\u003eX-Ray Fluorescence Spectrometry \u003cbr\u003eX-Ray Microanalysis, Quantitative \u003cbr\u003eX-Ray Diffraction \u003cbr\u003eX-Ray Powder Diffraction \u003cbr\u003eX-Ray Topography\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003eSubject Areas: Materials science [\u003ca title=\"See our other books on Materials science\" href=\"https:\/\/freshlyprintedbooks.co.uk\/search?q=%22Materials%20science%20%5BTGM%5D%22\"\u003eTGM\u003c\/a\u003e]\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\r\n\u003c\/font\u003e","brand":"Elsevier Science","offers":[{"title":"Default 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