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Spectrum analysis --- Analyse spectrale --- Spectrum analysis. --- Massaspectrometrie. --- Périodiques. --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Qualitative --- Spectrometry --- Analytical chemistry
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This book delineates practical, tested, general methods for ultraviolet, visible, and infrared spectrometry in clear language for novice users, and serves as a reference resource for advanced spectroscopists. Applied Spectroscopy includes important information and equations which will be referred to regularly. The book emphasizes reflectance and color measurements due to their common usage in todays spectroscopic laboratories, and contains methods for selectinga measurement technique as well as solar and color measurements. Written by experts in the field, this text covers spectrometry
Spectrum analysis --- Solids --- Solid state physics --- Transparent solids --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Industrial applications --- Qualitative --- Analytical chemistry --- SPECTROPHOTOMETRY --- SPECTROMETERS --- SPECTROSCOPY --- IR SPECTROSCOPY --- REFLECTION SPECTROSCOPY --- CALORIMETRY --- MATERIAL ANALYSIS --- CERAMICS --- FABRICS --- ANALYSIS
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This volume is for practitioners, experimentalists, and graduate students in applied physics, particularly in the fields of atomic and molecular physics, who work with vacuum ultraviolet applications and are in need of choosing the best type of modern instrumentation. It provides first-hand knowledge of the state-of-the-art equipment sources and gives technical information on how to use it, along with a broad reference bibliography.Key Features* Aimed at experimentalists who are in need of choosing the best type of modern instrumentation in this applied field* Contains a detail
Spectrum analysis. --- Ultraviolet spectra. --- Vacuum ultraviolet spectroscopy. --- Far ultraviolet spectroscopy --- Ultraviolet spectroscopy --- Spectrum, Ultraviolet --- Ultra-violet spectrum --- Spectrum analysis --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Qualitative --- Analytical chemistry --- Vacuum ultraviolet spectroscopy
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This volume is for practitioners, experimentalists, and graduate students in applied physics, particularly in the fields of atomic and molecular physics, who work with vacuum ultraviolet applications and are in need of choosing the best type of modern instrumentation. It provides first-hand knowledge of the state-of-the-art equipment sources and gives technical information on how to use it, along with a broad reference bibliography.
Vacuum ultraviolet spectroscopy --- Vacuum ultraviolet spectroscopy. --- Ultraviolet spectra. --- Spectrum analysis. --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Spectrum, Ultraviolet --- Ultra-violet spectrum --- Spectrum analysis --- Far ultraviolet spectroscopy --- Ultraviolet spectroscopy --- Qualitative --- Analytical chemistry
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Computer composition --- Computer sound processing --- Fractals --- Spectrum analysis --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Fractal geometry --- Fractal sets --- Geometry, Fractal --- Sets, Fractal --- Sets of fractional dimension --- Dimension theory (Topology) --- Sound processing, Computer --- Electronic digital computers --- Sound --- Electronic composition --- Qualitative --- Recording and reproducing --- Digital techniques --- Theses --- Computer composition. --- Computer sound processing. --- Fractals. --- Spectrum analysis. --- Computer composition (Music) --- Spectrometry --- Analytical chemistry
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fysicochemie --- Organic spectroscopy --- Organic compounds --- Spectrum analysis --- Analysis --- 543.42 --- -Spectrum analysis --- Chemie --- Spectrometrie --- Spectroscopie --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Optics --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Compounds, Organic --- Organic chemicals --- Carbon compounds --- Spectrum analysis. Spectroscopy. Spectrography. Spectrometry. Spectrophotometry. Fluorescence analysis --- Qualitative --- 543.42 Spectrum analysis. Spectroscopy. Spectrography. Spectrometry. Spectrophotometry. Fluorescence analysis --- ANÁLISE ESPECTRAL (ANÁLISE DE SÉRIES TEMPORAIS). --- Chemische analyses. --- Composés organiques --- Infraroodspectrometrie. --- Massaspectrometrie. --- NMR. --- Organic, compounds --- Organische Verbindungen. --- Organische verbindingen. --- QUÍMICA ORGÂNICA. --- RESSONÂNCIA MAGNÉTICA NUCLEAR. --- Raman spectrometrie. --- Spectroscopie. --- Spectrum analysis. --- Spectrumanalyse. --- Spektroskopie. --- UV-foto-elektronspectrometrie. --- Analyse. --- Analysis. --- Spectrometry --- Analytical chemistry --- Organic compounds - Analysis --- Química orgánica.
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Scanning Electron Microscopy provides a description of the physics of electron-probe formation and of electron-specimen interations. The different imaging and analytical modes using secondary and backscattered electrons, electron-beam-induced currents, X-ray and Auger electrons, electron channelling effects, and cathodoluminescence are discussed to evaluate specific contrasts and to obtain quantitative information.
Scanning electron microscopy --- 543.063 --- Analytical chemistry--?.063 --- Scanning electron microscopy. --- 543.063 Analytical chemistry--?.063 --- Electron microscopy --- Spectroscopy. --- Microscopy. --- Solid state physics. --- Surfaces (Physics). --- Interfaces (Physical sciences). --- Thin films. --- Physics. --- Spectroscopy and Microscopy. --- Solid State Physics. --- Surface and Interface Science, Thin Films. --- Physics, general. --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Films, Thin --- Solid film --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films --- Surface chemistry --- Surfaces (Physics) --- Physics --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Optics --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Qualitative --- Analytical chemistry
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Since the discovery in 1986 of high temperature superconductors by J. G. Bednorz and K. A. Müller, a considerable progress has been made and several important scientific problems have emerged. Within this NATO Advanced Study Institute our intention was to focus mainly on the controversial topic of the symmetry of the superconducting gap and given the very short coherence length, the role of fluctuations. The Institute on ‘The Gap Symmetry and Fluctuations in High- Superconductors’ took place in the “Institut d’Etudes Scientifiques de Cargèse” in Corsica, France, between 1 - 13 September 1997. The 110 participantsfrom 18 countries (yet 30 nationalities) including 23 full time lecturers, have spent two memorable weeks in this charming Mediterranean resort. All lecturers were asked to prepare pedagogical papers to clearly present the central physical idea behind specific model or experiment. The better understanding of physics of high temperature superconductivity is certainly needed to guide the development of applications of these materials in high and weak current devices.
Energy gap (Physics) -- Congresses. --- Fluctuations (Physics) -- Congresses. --- High-temperature superconductors -- Congresses. --- High temperature superconductors --- Energy gap (Physics) --- High-temperature superconductors --- Physics. --- Solid state physics. --- Spectroscopy. --- Microscopy. --- Electrical engineering. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Electrical Engineering. --- Fluctuations (Physics) --- Electron configuration --- Congresses --- Computer engineering. --- Electric engineering --- Engineering --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Optics --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Physics --- Solids --- Qualitative --- Analytical chemistry --- Spectrum analysis.
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A summary of recent developments in theoretical and experimental studies of fluctuation effects in itinerant electron magnets, focusing on novel physical phenomena: soft-mode spin fluctuations and zero-point effects, strong spin anharmonicity, magnetic frustrations in metals, fluctuation effects in Invar alloys and low-dimensional systems. All of these may be important for novel high-technology applications.
Magnetic ions --- Magnetisatie --- Magnetization --- Magnétisation --- Free electron theory of metals --- Congresses --- Condensed matter. --- Statistical physics. --- Dynamical systems. --- Solid state physics. --- Spectroscopy. --- Microscopy. --- Magnetism. --- Magnetic materials. --- Condensed Matter Physics. --- Complex Systems. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Magnetism, Magnetic Materials. --- Statistical Physics and Dynamical Systems. --- Materials --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Optics --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Solids --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Mechanics --- Statics --- Mathematical statistics --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Qualitative --- Statistical methods --- Analytical chemistry --- Free electron theory of metals. --- Nuclear magnetism. --- Magnetism, Band theory of --- Band model of magnetism --- Band theory of magnetism --- Itinerant-electron magnetism --- Energy-band theory of solids --- Magnetism --- Nuclear physics --- Metals
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