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Liquids --- Solids --- Fourier transform nuclear magnetic resonance spectroscopy. --- Spectra. --- Spectra.
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Spectrum Analysis --- Magnetic Resonance Spectroscopy --- Fourier Analysis --- Organic Compounds --- Nuclear Magnetic Resonance Spectroscopy --- Organic compounds --- Fourier transform nuclear magnetic resonance spectroscopy --- Proton magnetic resonance spectroscopy --- Spectra --- Atlases --- 543.422.25 <083> --- -Fourier transform nuclear magnetic resonance spectroscopy --- #WSCH:MACT --- Nuclear magnetic resonance spectroscopy --- Protons --- Spectrum analysis --- FT-NMR spectroscopy --- Fourier transform spectroscopy --- Compounds, Organic --- Organic chemicals --- Carbon compounds --- Using high frequency electromagnetic waves (radio waves). Nuclear manetic resonance spectroscopy. NMR spectroscopy--Tabellen. Lijsten. Indices --(niet-bibliografische) --- -Atlases --- Atlases. --- 543.422.25 <083> Using high frequency electromagnetic waves (radio waves). Nuclear manetic resonance spectroscopy. NMR spectroscopy--Tabellen. Lijsten. Indices --(niet-bibliografische) --- Spectra&delete& --- Organic compounds - Spectra - Atlases --- Fourier transform nuclear magnetic resonance spectroscopy - Atlases --- Proton magnetic resonance spectroscopy - Atlases
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Structural Biology Using Electrons and X-rays is the perfect book to provide advanced undergraduates or graduate students with an accessible introduction to the two major diffraction-based techniques of structural biology. While concentrating on electron cryo-microscopy with image analysis, it also includes X-ray crystallography in a coherent survey of fundamental principles. Starting with Fourier transforms and progressing through optics and imaging principles, symmetry and three-dimensional reconstruction theory, Structural Biology Using Electrons and X-rays ends in an accou
Biology. --- Biomolecules - Structure. --- Biomolecules --Structure. --- Diffraction. --- Electron optics. --- Electron probe microanalysis. --- Electrons. --- X-ray spectroscopy. --- X-rays. --- Biomolecules --- X-ray spectroscopy --- Electron optics --- Electron probe microanalysis --- Genetics --- Signal Processing, Computer-Assisted --- Mathematical Concepts --- Investigative Techniques --- Biochemistry --- Spectrum Analysis --- Chemistry --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Biological Science Disciplines --- Computing Methodologies --- Biology --- Chemistry Techniques, Analytical --- Phenomena and Processes --- Magnetic Resonance Spectroscopy --- Fourier Analysis --- Molecular Biology --- Natural Science Disciplines --- Information Science --- Disciplines and Occupations --- Human Anatomy & Physiology --- Engineering & Applied Sciences --- Health & Biological Sciences --- Animal Biochemistry --- Biophysics --- Applied Physics --- Structure --- Fourier transform optics. --- Fourier transform nuclear magnetic resonance spectroscopy. --- Structure. --- Analysis. --- Mathematical models. --- FT-NMR spectroscopy --- Fourier transform spectroscopy --- Nuclear magnetic resonance spectroscopy --- Fourier optics --- Fourier transformations --- Optics --- Biological molecules --- Molecules --- Molecular biology
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