The next class of materials discussed are ceramics. Detailed groupings and definitions of technical ceramics are given and traditional ceramics and cements, silicate ceramics, refractory ceramics, oxide ceramics, and non-oxide ceramics are treated. The physical and physicochemical properties of those polymers, copolymers, and polymer blends which are widely used for scientific applications and in industry are described in the next chapter.
The last chapter serves as a source of data and commercial product information on glasses as engineering materials of practical importance. The first step corresponds to searching for the substance of interest, that is, the relevant group of substances. The second step corresponds to the physical property of interest.
The subsections are characterized by the groups of the Periodic Table to which the constituent elements belong. For each group of substances, the physical properties are organized into four classes. These property classes are further subdivided into individual properties.
Materials covered are semiconductors, superconductors, magnetic materials, dielectrics and electrooptics, and ferro- and antiferroelectrics. The chapter on liquid crystals covers physical properties of the most common liquid crystalline substances as well as some liquid crystalline mixtures.
Data compiled in the chapter on solid surfaces refer to atomically clean and well characterized surfaces. The values reported are mainly averages from different authors with errors given as standard deviations where reference to the original papers is made. In the chapter on nanostructured materials emphasis is placed on size and confinement effects.
The properties associated with electronic confinement are addressed and both quantum wells and quantum dots are reviewed. Particular attention is drawn to semiconductor-doped matrices. The two main applications of nanostructured magnetic materials, spintronics and ultrahigh-density data storage media, are also treated.
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Many chapters are authored by Landolt-Bornstein editors, including this Springer Handbook's editors. Show all links. Allow this favorite library to be seen by others Keep this favorite library private. Save Cancel. Find a copy in the library Finding libraries that hold this item Enthalt in einem Band haufig benotigte Daten aus allen Bereichen der Festkorperphysik und der Materialforschung. Fur den Inhalt dieses Handbooks wurden schwer zugangliche Quellen wie die renommierte Landolt-Bornstein Datensammlung benutzt.
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Remember me on this computer. Cancel Forgot your password? W Martienssen ; Hans Warlimont. Condensed matter. View all subjects. Similar Items. Print version: Springer handbook of condensed matter and materials data. Part 1 General Tables: 1.
Other editions. Enlarge cover. Error rating book. Refresh and try again. Open Preview See a Problem? Details if other :. Thanks for telling us about the problem. Return to Book Page. Werner Martienssen Editor. Springer Handbook of Condensed Matter and Materials Data provides a concise compilation of data and functional relationships from the fields of solid-state physics and materials in this page volume.
The data, encapsulated in tables and illustrations, have been selected and extracted primarily from the extensive high-quality data collection Landolt-B rnstein a Springer Handbook of Condensed Matter and Materials Data provides a concise compilation of data and functional relationships from the fields of solid-state physics and materials in this page volume.
The data, encapsulated in tables and illustrations, have been selected and extracted primarily from the extensive high-quality data collection Landolt-B rnstein and also from other systematic data sources and recent publications of physical and technical property data. Many chapters are authored by Landolt-B rnstein editors, including the prominent Springer Handbook editors, W. Martienssen and H.
Warlimont themselves. The Handbook is designed to be useful as a desktop reference for fast and easy retrieval of essential and reliable data in the lab or office. References to more extensive data sources are also provided in the book and by interlinking to the relevant sources on the enclosed CD-ROM. Physicists, chemists and engineers engaged in fields of solid-state sciences and materials technologies in research, development and application will appreciate the ready access to the key information coherently organized within this wide-ranging Handbook.
From the reviews When I received the book, I immediately searched for data I never found elsewhere No doubt that this book will soon be in every library and on the desk of most solid state scientists and engineers. It will never be at rest. Get A Copy. Hardcover , pages. More Details Original Title.
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When I received the book, I immediately searched for data I never found elsewhere No doubt that this book will soon be in every library and on the desk of most solid state scientists and engineers. It will never be at rest.
Springer Shop Labirint Ozon. Werner Martienssen , Hans Warlimont. Rudiments of Crystallography. Functional Materials. Dielectrics and Electrooptics. Ferroelectrics and Antiferroelectrics. Special Structures. The Physics of Solid Surfaces. HAS helium atom scattering. HB Brinell hardness number. HEED high-energy electron dif fraction. HK Knoop hardness. HOPG highly oriented pyrolytic graphite. HPDC high-pressure die casting.
HR TEM high-resolution transition electron. HT high temperature. HTSC high-temperature superconductor. IB ion bombardment. IB AD ion-beam-assisted deposition. ICISS impact ion scattering spectroscopy. IPE in verse photoemission. IPES in verse photoemission spectroscopy.
ISO International Organization for. ISS ion scattering spectroscopy. JDOS joint density of states. XVI List of Abbreviations. LAPW linearized augmented-plane-wa ve. LB Langmuir—Blodgett. LCM liquid crystal material. LCP liquid crystal polymer. LCs liquid crystals. LD A local-density approximation. LDOS local density of states. LEED lo w-energy electron dif fraction. LPE liquid phase epitaxy. MBE molecular-beam epitaxy.
MD molecular dynamics. MEED medium-energy electron dif fraction. MEIS medium-energy ion. MFM magnetic force microscopy. MOCVD metal-organic chemical v apor deposition. MOKE magneto-optical Kerr ef fect. MQW multiple quantum well. OPO optical parametric oscillation. PDS photothermal displacement spectroscopy.
PED photoelectron diffraction. PES photoemission spectroscopy. PLAP pulsed laser atom probe. PLD pulsed laser deposition. PSZ stabilized zirconia. PZT piezoelectric material. RIE reactiv e ion etching. RP A random-phase approximation. R T room temperature. R TP room temperaure and standard pressure.
SAM self-assembled monolayer. SARS scattering and recoiling ion. SA W surface acoustic w av e. SBZ surface Brillouin zone. SCLS surface core le vel shift. SEM scanning electron microscope. SFG sum frequency generation. SH second harmonic. SHG second-harmonic generation. SIMS secondary-ion mass spectroscopy.
SNR signal-to-noise ratio. SPV surface photov oltage spectroscopy. STS scanning tunneling spectroscopy. SXRD surface X-ray dif fraction. TEM transmission electron. TMR tunnel magnetoresistance. TMT thermomechanical treatment. TOM torsion oscillation magnetometry.
Authoritative one-volume desk reference. Contains most frequently used data and relationships in condensed-matter and materials science. Springer Handbook of Condensed Matter and Materials Data provides a concise compilation of data and functional relationships from the fields of solid-state. In Sect, we present tables of the most recently determined recommended numerical values for alarge number of those fundamental constants which play arole.