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Synchrotron radiation. --- Storage rings. --- Rayonnement cyclotron
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Synchrotron radiation --- X-ray optics --- Rayonnement cyclotron
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This book explains the underlying physics of synchrotron radiation and derives its main properties. It is divided into four parts. The first covers the general case of the electromagnetic fields created by an accelerated relativistic charge. The second part concentrates on the radiation emitted by a charge moving on a circular trajectory. The third looks at undulator radiation, covering plane weak undulators, strong undulators and other more general undulators. The final part deals with applications and investigates the optics of synchrotron radiation dominated by diffraction due to the small opening angle. It also includes a description of electron storage rings as radiation sources and the effect of the emitted radiation on the electron beam. This book provides a valuable reference for scientists and engineers in the field of accelerators, and all users of synchrotron radiation.
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Synchrotron radiation --- Rayonnement cyclotron --- Research --- Laboratories --- Periodicals --- Recherche --- Laboratoires --- Périodiques --- University of Tokyo. --- Periodicals --- Tokyo (Japan) --- Tokyo (Japon) --- Laboratories --- Periodicals. --- Laboratoires --- Périodiques
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Radiation chemistry --- Radiobiology --- Synchrotron radiation --- Chimie sous rayonnement --- Radiobiologie --- Rayonnement cyclotron --- 621.384.634 --- Varying-field accelerators. Synchrotrons in general --- 621.384.634 Varying-field accelerators. Synchrotrons in general --- Biological techniques --- Theoretical spectroscopy. Spectroscopic techniques --- fysicochemie --- Nuclear chemistry
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Neon --- Electron spectroscopy. --- Synchrotron radiation. --- Photoelectron spectroscopy. --- Auger effect. --- Wave functions. --- Spectroscopie électronique --- Rayonnement cyclotron --- Spectroscopie de photoélectrons --- Effet Auger --- Spectra. --- Spectroscopie électronique --- Spectroscopie de photoélectrons --- AUGER EFFECT --- ELECTRON SPECTROSCOPY --- NEON --- PHOTOELECTRON SPECTROSCOPY --- SYNCHROTRON RADIATION --- WAVE FUNCTIONS --- SPECTRA
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678.01:543 --- Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- 678.01:543 Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- Synchrotron radiation. --- X-rays --- Electron microscopy. --- Solid state chemistry. --- Polymers --- Rayonnement cyclotron --- Rayons X --- Microscopie électronique --- Chimie de l'état solide --- Polymères --- Scattering. --- Diffusion
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Rocks. Minerals --- nuclear physics --- Experimental nuclear and elementary particle physics --- particle physics --- fysicochemie --- Chemical and physical cristallography --- Nuclear physics --- deeltjesfysica --- Synchrotron radiation --- Rayonnement cyclotron --- Periodicals --- Périodiques --- Synchrotrons --- Radiation --- Synchrotronstraling --- Industrial applications --- Radiation. --- Synchrotrons. --- Chemistry --- Health Sciences --- Life Sciences --- Physics --- Telecommunications Technology --- Radiation Chemistry --- Diagnostics --- Biology --- General and Others --- Image Processing & Television Technology --- kernenergie --- Journal --- Chemical and physical crystallography --- Synchrotron radiation - Periodicals --- Synchrotron radiation - Industrial applications - Periodicals --- Synchrotrons - Periodicals --- Radiation - Periodicals
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The availability of synchrotron x-ray sources and the subsequent developments described in this book have led to substantial progress in our understanding of molecular ordering at liquid interfaces. This practical guide enables graduate students and researchers working in physics, chemistry, biology and materials science to understand and carry out experimental investigations into the basic physical and chemical properties of liquid surfaces and interfaces. The book examines the surfaces of bulk liquids, thin wetting films and buried liquid-liquid interfaces. It discusses experiments on simple and complex fluids, including pure water and organic liquids, liquid crystals, liquid metals, electrified liquid-liquid interfaces and interfacial monolayers of amphiphiles, nanoparticles, polymers and biomolecules. A detailed description of the apparatus and techniques required for these experiments is provided, and theoretical approaches to data analysis are described, including approximate methods such as the Master formula, the Born approximation, Parratt's algorithm and the Distorted Wave Approximation.
Liquid-liquid interfaces --- Synchrotron radiation --- X-ray spectroscopy --- Interfaces liquide-liquide --- Rayonnement cyclotron --- Spectroscopie de rayons X --- Liquid-liquid interfaces. --- Synchrotron radiation. --- X-ray spectroscopy. --- Emission spectroscopy, X-ray --- Energy dispersive x-ray spectroscopy --- Excitation analysis, Fluorescent --- Fluorescence analysis, X-ray --- Fluorescent excitation analysis --- Fluorescent x-ray spectroscopy --- X-ray emission spectroscopy --- X-ray fluorescence analysis --- XES (X-ray emission spectroscopy) --- Spectrum analysis --- Bremsstrahlung, Magnetic --- Emission, Synchrotron --- Magnetic bremsstrahlung --- Synchrotron emission --- Electromagnetic waves --- Particles (Nuclear physics) --- Interfaces (Physical sciences)
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