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Molecular spectroscopy --- Molecular spectroscopy. --- Spectroscopie moléculaire
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Molecular spectroscopy --- Photons --- Spectroscopie moléculaire --- Photons
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Molecular spectroscopy --- Spectroscopie moléculaire --- Molecular spectroscopy. --- Spectroscopie moléculaire
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Spectroscopie moléculaire --- Spectroscopie moléculaire --- Molecular spectroscopy. --- Molecular spectroscopy
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Designed as a practical text, "Quantum Mechanical Foundations of Molecular Spectroscopy" covers the quantum mechanical fundamentals of molecular spectroscopy from the view of a professional spectroscopist, rather than a theoretician. Written by a noted expert on the topic, the book puts the emphasis on the relationship between spectroscopy and quantum mechanics, and provides the background information and derivations of the subjects needed to understand spectroscopy including : stationary energy states, transitions between these states, selection rules, and symmetry. The phenomenal growth of all forms of spectroscopy over the past eight decades has contributed enormously to our understanding of molecular structure and properties. Today spectroscopy covers a broad field including the modern magnetic resonance techniques, non-linear, laser and fiber-based spectroscopy, surface and surface-enhanced spectroscopy, pico- and femtosecond time resolved spectroscopy, and many more. This up-to-date resource discusses several forms of spectroscopy that are used in many fields of science, such as fluorescence, surface spectroscopies, linear and non-linear Raman spectroscopy and spin spectroscopy. The book contains the physics and mathematics needed to understand spectroscopy, explores spectroscopic methods the are widely used in chemistry, biophysics, biology, and materials science, includes detailed explanations and worked examples.
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This textbook offers an introduction to the foundations of spectroscopic methods and provides a bridge between basic concepts and experimental applications in fields as diverse as materials science, biology, solar energy conversion, and environmental science. The author emphasizes the use of time-dependent theory to link the spectral response in the frequency domain to the behavior of molecules in the time domain, strengthened by two brand new chapters on nonlinear optical spectroscopy and time-resolved spectroscopy. Theoretical underpinnings are presented to the extent necessary for readers to understand how to apply spectroscopic tools to their own interests.
Molecular spectroscopy. --- Spectrum analysis. --- Spectroscopie moléculaire --- Spectroscopie. --- Spectroscopie moléculaire
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Molecular spectroscopy. --- Molecular rotation. --- Spectroscopie moléculaire --- Rotation moléculaire
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Molecular orbitals --- Molecular spectroscopy --- Orbites moléculaires --- Spectroscopie moléculaire
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