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Principles and applications of X-ray...
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Hashimoto, Takeji.
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Principles and applications of X-ray, light and neutron scattering
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Principles and applications of X-ray, light and neutron scattering/ by Takeji Hashimoto.
作者:
Hashimoto, Takeji.
出版者:
Singapore :Springer Nature Singapore : : 2022.,
面頁冊數:
xvi, 627 p. :ill. (some color), digital ;24 cm.
內容註:
1. General Introduction -- PART I: FUNDAMENTALS OF X-RAY, LIGHT AND NEUTEON SCATTERING -- 2. Scattering Mechanism of X-ray, Light and Neutron -- 3. Scattering of Schrödinger Wave (Neutron Beam): Interference of Scattered Wave and Born Approximation -- 4. Scattering of X-ray and Visible Light -- 5. Responses of Electrons to X-ray and Light: Thomson Scattering and Rayleigh Scattering -- 6. Polarization of Scattered Electromagnetic Wave and Light Scattering from Optically Anisotropic Elements -- 7. Rayleigh-Gans-Born-Debye Approximation for Interference of Scattered Waves from Large Particles -- 8. Physics of Reciprocal Phenomena -- 9. Scattering Structure Factor Represents Spectral Intensity Distribution of Fourier Modes of a Given Structure -- PART II: X-RAY AND NEUTRON SCATTERING: ISOTROPIC SCATTERING -- 10. Scattering from Isolated Particles -- 11. Scattering from Fluctuations: Statistical Theory of Scattering -- 12. Scattering from Thermal Concentration Fluctuations and Composition Fluctuations -- 13. Interparticle Interference in Liquids -- 14. Interparticle Interference in Solids: Diffraction from Paracrystal Lattice and Superlattice -- 15. Scattering from Fractals -- 16. Combined Scattering Methods and Hierarchical Structures -- PART III: LIGHT SCATTERING -- 17. Light Scattering from Solids and Condensed Matters -- 18. Experimental Method and Apparatus -- 19. Light Scattering from Fluctuations -- 20. Light Scattering from Fibrillar Crystalline Superstructures -- 21. Light Scattering from Spherulitic Crystalline Superstructure -- 22. Light Scattering from Super-Lattice Structure of Crystalline Superstructures -- 23. Mie Scattering -- 24. APPENDICES.
Contained By:
Springer Nature eBook
標題:
X-rays. -
電子資源:
https://doi.org/10.1007/978-981-16-1645-7
ISBN:
9789811616457
Principles and applications of X-ray, light and neutron scattering
Hashimoto, Takeji.
Principles and applications of X-ray, light and neutron scattering
[electronic resource] /by Takeji Hashimoto. - Singapore :Springer Nature Singapore :2022. - xvi, 627 p. :ill. (some color), digital ;24 cm.
1. General Introduction -- PART I: FUNDAMENTALS OF X-RAY, LIGHT AND NEUTEON SCATTERING -- 2. Scattering Mechanism of X-ray, Light and Neutron -- 3. Scattering of Schrödinger Wave (Neutron Beam): Interference of Scattered Wave and Born Approximation -- 4. Scattering of X-ray and Visible Light -- 5. Responses of Electrons to X-ray and Light: Thomson Scattering and Rayleigh Scattering -- 6. Polarization of Scattered Electromagnetic Wave and Light Scattering from Optically Anisotropic Elements -- 7. Rayleigh-Gans-Born-Debye Approximation for Interference of Scattered Waves from Large Particles -- 8. Physics of Reciprocal Phenomena -- 9. Scattering Structure Factor Represents Spectral Intensity Distribution of Fourier Modes of a Given Structure -- PART II: X-RAY AND NEUTRON SCATTERING: ISOTROPIC SCATTERING -- 10. Scattering from Isolated Particles -- 11. Scattering from Fluctuations: Statistical Theory of Scattering -- 12. Scattering from Thermal Concentration Fluctuations and Composition Fluctuations -- 13. Interparticle Interference in Liquids -- 14. Interparticle Interference in Solids: Diffraction from Paracrystal Lattice and Superlattice -- 15. Scattering from Fractals -- 16. Combined Scattering Methods and Hierarchical Structures -- PART III: LIGHT SCATTERING -- 17. Light Scattering from Solids and Condensed Matters -- 18. Experimental Method and Apparatus -- 19. Light Scattering from Fluctuations -- 20. Light Scattering from Fibrillar Crystalline Superstructures -- 21. Light Scattering from Spherulitic Crystalline Superstructure -- 22. Light Scattering from Super-Lattice Structure of Crystalline Superstructures -- 23. Mie Scattering -- 24. APPENDICES.
This book provides insight into the underlying basic theories and concepts in X-ray, light, and neutron scattering. The three scattering principles are systematically presented, together with a unified description based on elastic scattering of electromagnetic waves and the Schrödinger wave from matter. These explanations are presented with an introduction of their common Born approximation using a consistent set of symbols and terminology and with step-by-step derivations of equations. This book emphasizes the combined applications of these three scattering methods, wherever and whenever possible, as a very powerful methodology for characterization of internal structures of soft matters in the length scale ranging from subnanometers to a few 10 micron meters. These applications include explorations for evolution of hierarchically self-organized internal structures of a variety of soft matters, including cells, under diverse environmental conditions. This book will not only be an excellent resource for graduate students and academic researchers who analyze structures of soft matters and polymers, but it will also be useful for researchers in industries.
ISBN: 9789811616457
Standard No.: 10.1007/978-981-16-1645-7doiSubjects--Topical Terms:
604695
X-rays.
LC Class. No.: QC481
Dewey Class. No.: 539.7222
Principles and applications of X-ray, light and neutron scattering
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1. General Introduction -- PART I: FUNDAMENTALS OF X-RAY, LIGHT AND NEUTEON SCATTERING -- 2. Scattering Mechanism of X-ray, Light and Neutron -- 3. Scattering of Schrödinger Wave (Neutron Beam): Interference of Scattered Wave and Born Approximation -- 4. Scattering of X-ray and Visible Light -- 5. Responses of Electrons to X-ray and Light: Thomson Scattering and Rayleigh Scattering -- 6. Polarization of Scattered Electromagnetic Wave and Light Scattering from Optically Anisotropic Elements -- 7. Rayleigh-Gans-Born-Debye Approximation for Interference of Scattered Waves from Large Particles -- 8. Physics of Reciprocal Phenomena -- 9. Scattering Structure Factor Represents Spectral Intensity Distribution of Fourier Modes of a Given Structure -- PART II: X-RAY AND NEUTRON SCATTERING: ISOTROPIC SCATTERING -- 10. Scattering from Isolated Particles -- 11. Scattering from Fluctuations: Statistical Theory of Scattering -- 12. Scattering from Thermal Concentration Fluctuations and Composition Fluctuations -- 13. Interparticle Interference in Liquids -- 14. Interparticle Interference in Solids: Diffraction from Paracrystal Lattice and Superlattice -- 15. Scattering from Fractals -- 16. Combined Scattering Methods and Hierarchical Structures -- PART III: LIGHT SCATTERING -- 17. Light Scattering from Solids and Condensed Matters -- 18. Experimental Method and Apparatus -- 19. Light Scattering from Fluctuations -- 20. Light Scattering from Fibrillar Crystalline Superstructures -- 21. Light Scattering from Spherulitic Crystalline Superstructure -- 22. Light Scattering from Super-Lattice Structure of Crystalline Superstructures -- 23. Mie Scattering -- 24. APPENDICES.
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This book provides insight into the underlying basic theories and concepts in X-ray, light, and neutron scattering. The three scattering principles are systematically presented, together with a unified description based on elastic scattering of electromagnetic waves and the Schrödinger wave from matter. These explanations are presented with an introduction of their common Born approximation using a consistent set of symbols and terminology and with step-by-step derivations of equations. This book emphasizes the combined applications of these three scattering methods, wherever and whenever possible, as a very powerful methodology for characterization of internal structures of soft matters in the length scale ranging from subnanometers to a few 10 micron meters. These applications include explorations for evolution of hierarchically self-organized internal structures of a variety of soft matters, including cells, under diverse environmental conditions. This book will not only be an excellent resource for graduate students and academic researchers who analyze structures of soft matters and polymers, but it will also be useful for researchers in industries.
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