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- Fundamentals of Acoustics | Physics Special Topics | Physics & Astronomy | Subjects | Wiley
- Acoustics: Basic Physics, Theory, and Methods / Edition 1
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Wiener-Hopf Method. Techniques of Solution of Integral Equations. Aime Bergassoli, Introduction to Guided Waves. Definitions and General Remarks.
Fundamentals of Acoustics | Physics Special Topics | Physics & Astronomy | Subjects | Wiley
The Problem of the Waveguide. Shallow Water Guide. Duct with Absorbing Walls. Ducts with Varying Cross Section. Paul J. A Simple One-dimensional Example. Infinite Fluid-Loaded Thin Plate. Dominique Habault and Paul J. Filippi, Mathematical Appendix: Notations and Definitions.
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He has been teaching courses in Acoustics in France since the early seventies, besides having studied and taught in the U. He obtained his Doctorate of Sciences degree the highest national university diploma in France in He worked on propagation and diffraction problems related to environmental Acoustics and on guided waves phenomena related to building Acoustics.
Dominique Habault has been teaching courses in Acoustics in France since the early seventies, besides having studied and taught in the U. Jean-Pierre Lefebvre has been teaching courses in Acoustics in France since the early seventies, besides having studied and taught in the U. He is now the Directeur de Recherche. He is involved in acoustic imaging and related inverse problems, mainly for biomedical and material applications. The aims of the authors clearly have been to provide their students with, first, the fundamental theoretical physics background which they need, and then with the knowledge of the most up-to-date mathematical techniques that they can use to produce practically useful answers to real problems What is perhaps more impressive to me about this book is its constant adhesion throughout to the laws of physics and the logic of natural philosophy.
Although the development is largely mathematical, the real physics of the problem being dealt with is always taken into account, explicitly or implicitly, and rigorously. All authors are contemporary experts on the subject. Glegg, Journal of Sound and Vibration, We are always looking for ways to improve customer experience on Elsevier.
Acoustics: Basic Physics, Theory, and Methods / Edition 1
The master programme in acoustics provides a thorough introduction to the science of sound, with emphasis on ultrasound. During the master education, the student is - through supervision - trained in conducting an independent scientific work, related to an ongoing research activity in the acoustics group. The student is trained in methods used in basic research and applications of ultrasound, such as e. Emphasis is laid on conscious evaluation of own work and published research, besides of skills in presenting the work in scientific writing and orally.
A bachelor's degree in physics.
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- Analogue Transformations in Physics and their Application to Acoustics | Scientific Reports.
To qualify for admission to the master's programme, the average grade for the specialization in the bachelor's degree, should normally be at least equivalent to a C in the Norwgian grade system. Post, E. Cummer, S. One path to acoustic cloaking. New J.
Acoustic cloaking in three dimensions using acoustic metamaterials. Norris, A. Acoustic metafluids. Acoustic cloaking and transformation acoustics.
D: Appl. Zhang, S. Cloaking of Matter Waves. McCall, M. A spacetime cloak, or a history editor. Fridman, M. Demonstration of temporal cloaking. Nature , 62—65 Frequency conversion by exploiting time in transformation optics. Analogue Gravity.
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Living Rev. Relativity 14 , 3 Visser, M. Acoustic black holes: Horizons, ergospheres, and Hawking radiation. A Real Lorentz-FitzGerald contraction. Bergmann, P. Torrent, D. Homogenization of two-dimensional clusters of rigid rods in air. Effective parameters of clusters of cylinders embedded in a nonviscous fluid or gas. B 74 , Unruh, W. Experimental black hole evaporation? Li, J.
Popa, B. Experimental acoustic ground cloak in air. Garay, L. Black holes in Bose-Einstein condensates. Lahav, O.
Realization of a sonic black hole analogue in a Bose-Einstein condensate. Castro Neto, A. The electronic properties of graphene. Cortijo, A. Electronic properties of curved graphene sheets. Vakil, A. Transformation optics using graphene. Download references. We thank Reme Miralles for her help with Fig. All authors participated in the manuscript preparation and discussed the results.