UID:
almahu_9948025323602882
Umfang:
1 online resource (497 p.)
ISBN:
1-299-36385-7
,
0-323-14819-0
Serie:
Physical acoustics : principles and methods ; 16
Inhalt:
Physical Acoustics V16
Anmerkung:
Description based upon print version of record.
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Front Cover; Physical Acoustics Principles and Methods Volume XVI; Copyright Page; Table of Contents; CONTRIBUTORS; PREFACE; Chapter 1. Relaxation Processes in Sound Propagation in Fluids: A Historical Survey; 1. INTRODUCTION; 2. ATTENUATION OF SOUND IN A VISCOUS AND HEAT-CONDUCTING FLUID AS A CLASSICAL RELAXATION PROCESS; 3. SOUND PROPAGATION AS A MOLECULAR PROCESS; 4. JEANS' THEORY OF PROPAGATION OF SOUND THROUGH A GAS COMPOSED OF LOADED SPHERES; 5. EINSTEIN'S INVESTIGATION OF SOUND PROPAGATION IN PARTIALLY DISSOCIATED GASES
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6. APPLICATION OF THE RELAXATION CONCEPT TO SOUND DISPERSION AND ABSORPTION BY HERZFELD AND RICE7. THE INVESTIGATIONS OF BOURGIN ON THE PROPAGATION OF SOUND IN GASES; 8. KNESER'S RESEARCH ON THE DISPERSION OF SOUND DUE TO RELAXATION PROCESSES; 9. HENRY'S INVESTIGATION OF ENERGY EXCHANGES BETWEEN MOLECULES; 10. KNESER'S CONTRIBUTION TO THE MOLECULAR RELAXATION THEORY OF SOUND ABSORPTION; 11. THE COLLABORATION OF KNUDSEN AND KNESER IN STUDIES OF ANOMALOUS SOUND ABSORPTION IN GASES; 12. RELAXATIONAL THEORIES FOR THE EXCESS ABSORPTION OF SOUND IN LIQUIDS
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13. RELAXATION IN THE THEORY OF SOUND ATTENUATION IN SOLIDSREFERENCES; Chapter 2. Acoustic Vibrational Modes in Quartz Crystals: Their Frequency, Amplitude, and Shape Determination; 1. INTRODUCTION; 2. VIBRATIONAL MODES OF QUARTZ CRYSTALS; 3. SURVEY OF EXPERIMENTAL METHODS FOR DETERMINATION OF MODE SHAPES, FREQUENCIES, AND AMPLITUDES OF VIBRATIONS OF QUARTZ CRY...; 4. CONCLUSION; REFERENCES; Chapter 3. Electron and Phonon Drag on Mobile Dislocations in Metals at Low Temperatures; 1. INTRODUCTION; 2. REVIEW OF PRIOR EXPERIMENTAL WORK ON ELECTRON DRAG IN SUPERCONDUCTORS
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3. RECENT EXPERIMENTAL WORK ON MOBILE DISLOCATION DENSITIES AND DISLOCATION DRAG IN SUPERCONDUCTORS AND NORMAL-STATE METALS4. DISCUSSION; REFERENCES; Chapter 4. Two-Pulse Phonon Echoes in Solid-State Acoustics; 1. INTRODUCTION; 2. BACKWARD-WAVE ECHOES; 3. ACOUSTIC SPIN ECHOES; 4. POWDER ECHOES; 5. CONCLUDING REMARKS; REFERENCES; Chapter 5. Dynamic Polarization Echoes in Powdered Materials; 1. INTRODUCTION; 2. ANHARMONIC OSCILLATOR MODEL; 3. PARAMETRIC FIELD-MODE INTERACTION MODEL; 4. EXPERIMENTAL RESULTS AND COMPARISON WITH THEORY; 5. CONCLUDING REMARKS; REFERENCES
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Chapter 6. Memory Echoes in Powders1. INTRODUCTION; 2. GENERAL SURVEY OF EXPERIMENTAL DATA; 3. THE PARTICLE ROTATION MODEL; 4. INTERNAL DEFORMATION MODELS; 5. EXPERIMENTAL METHOD; 6. EXPERIMENTAL OBSERVATIONS; 7. CONCLUSIONS; APPENDIX A. DERIVATION OF TORQUE EQUATION FROM THE THREE-DIMENSIONAL MOTION OF A PARTICLE IN A FIELD; APPENDIX B. FIELD ORIENTATION DEPENDENCE FOR THE ROTATION MODEL; APPENDIX C. FIELD ORIENTATION DEPENDENCE FOR THE INTERNAL DEFORMATION MODEL; REFERENCES; Chapter 7. Fiber Optic Acoustic Transduction; 1. INTRODUCTION; 2. OPTICAL FIBER TYPES
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3. MACH-ZEHNDER FIBER INTERFEROMETER
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English
Weitere Ausg.:
ISBN 0-12-477916-6
Sprache:
Englisch