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120421s2012 njua o 000 0 eng d |
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|a 9781621986591
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|a (OCoLC)847000330
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|a TA491
|b .A33 2012eb
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|x 040000
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|a 671.73
|2 23
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|a UAMI
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|a Adachi, Sadao,
|d 1950-
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|a The Handbook on optical constants of metals :
|b in tables and figures /
|c Sadao Adachi.
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|a Hackensack, NJ :
|b World Scientific Pub.,
|c 2012.
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|a 1 online resource (xii, 671 pages :) :
|b illustrations
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|a text
|b txt
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|a computer
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|a online resource
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|a Preface; CONTENTS; 1 Introduction; 1.1 Electron Configuration in Atoms; 1.2 Crystal Structure; 1.2.1 Metal and Semimetal Elements; (a) Metallic bond; (b) Body-centered cubic structure; (c) Face-centered cubic structure; (d) Hexagonal close-packed structure; (e) Unusual crystal structure of metals and semimetals; 1.2.2 Transition-Metal Carbides and Nitrides; 1.2.3 Metallic Silicides; 1.2.4 High-Tc Superconductors; (a) YBa2Cu3O7-; (b) Bi2Sr2CaCu2O8; (c) MgB2; 1.3 Dielectric Function: Tensor Representation; 1.4 Optical Dispersion Relations; 1.5 Optical Sum Rules; 1.5.1 Inertial Sum Rule.
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|a 1.5.2 dc-Conductivity Sum Rule1.5.3 f-Sum Rule; 1.6 Model Dielectric Function; 1.6.1 Intraband Transitions; (a) Lorentz-Drude model; (b) Optical constants and electrical conductivity; 1.6.2 Interband Transitions; References; 2 Metal and Semimetal Elements; 2.1 Ia Metals; 2.1.1 Lithium (Li); References; 2.1.2 Sodium (Na); References; 2.1.3 Potassium (K); References; 2.1.4 Rubidium (Rb); References; 2.1.5 Cesium (Cs); References; 2.2 Ib Metals; 2.2.1 Copper (Cu); References; 2.2.2 Silver (Ag); References; 2.2.3 Gold (Au); References; 2.3 IIa Metals; 2.3.1 Beryllium (Be); References.
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|a 2.3.2 Magnesium (Mg)References; 2.3.3 Calcium (Ca); References; 2.3.4 Strontium (Sr); References; 2.3.5 Barium (Ba); References; 2.4 IIb Metals; 2.4.1 Zinc (Zn); References; 2.4.2 Cadmium (Cd); References; 2.4.3 Mercury (Hg); References; 2.5 IIIa Metals; 2.5.1 Scandium (Sc); References; 2.5.2 Yttrium (Y); References; 2.6 IIIb Metals; 2.6.1 Alminium (Al); Reference; 2.6.2 Gallium (Ga); References; 2.6.3 Indium (In); References; 2.6.4 Thallium (Tl); References; 2.7 IVa Metals; 2.7.1 Titanium (Ti); References; 2.7.2 Zirconium (Zr); References; 2.7.3 Hafnium (Hf); References.
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|a 2.8 IVb Semimetal and Metal2.8.1 Graphite (C); References; 2.8.2 White Tin (b-Sn); References; 2.9 Va Metals; 2.9.1 Vanadium (V); References; 2.9.2 Niobium (Nb); References; 2.9.3 Tantalum (Ta); References; 2.10 Vb Semimetals; 2.10.1 Antimony (Sb); References; 2.10.2 Bismuth (Bi); References; 2.11 VIa Metals; 2.11.1 Chromium (Cr); References; 2.11.2 Molybdenum (Mo); References; 2.11.3 Tungsten (W); References; 2.12 VIIa Metals; 2.12.1 Manganese (Mn); References; 2.12.2 Rhenium (Re); References; 2.13 VIII Metals; 2.13.1 Iron (Fe); References; 2.13.2 Cobalt (Co); References; 2.13.3 Nickel (Ni)
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|a This book presents data on the optical constants of metal elements (Na, Au, Mg, Hg, Sc, Al, Ti, ß-Sn, V, Cr, Mn, Fe, La, Th, etc.) semimetal elements (graphite, Sb, etc.), metallic compounds (TiN, VC, TiSi 2 , CoSi 2 , etc.) and high-temperature superconducting materials (YBa 2 Cu 3 O 7-d , MgB 2 , etc.). A complete set of the optical constants are presented in tabular and graphical forms over the entire photon-energy range. They are: the complex dielectric constant e( E )=e 1 ( E )+ie 2 ( E ), the complex refractive index n *( E )= n ( E )+i k ( E ), the absorption coefficient a( E ) and the.
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|a Knovel
|b ACADEMIC - Metals & Metallurgy
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|a Knovel
|b ACADEMIC - Optics & Photonics
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|a Metal coating.
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|a Metallizing.
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|a Polymers
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|a Revêtement métallique.
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|a TECHNOLOGY & ENGINEERING
|x Technical & Manufacturing Industries & Trades.
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|a Metal coating.
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|u https://appknovel.uam.elogim.com/kn/resources/kpHOCMITF6/toc
|z Texto completo
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|6 520-00
|a This book presents data on the optical constants of metal elements (Na, Au, Mg, Hg, Sc, Al, Ti, β-Sn, V, Cr, Mn, Fe, La, Th, etc.) semimetal elements (graphite, Sb, etc.), metallic compounds (TiN, VC, TiSi2, CoSi2, etc.) and high-temperature superconducting materials (YBa2Cu3O7-δ, MgB2, etc.). A complete set of the optical constants are presented in tabular and graphical forms over the entire photon-energy range. They are: the complex dielectric constant ε(E)=ε1(E)+iε2(E), the complex refractive index n*(E)=n(E)+ik(E), the absorption coefficient α(E) and the normal-incidence reflectivity R(E). The book will aid many who are interested to know the optical constants of the metals, semimetals, metallic compounds and high-temperature superconducting materials in the course of their work.
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