Mathematics of Wave Propagation
eBook - PDF

Mathematics of Wave Propagation

  1. English
  2. PDF
  3. Available on iOS & Android
eBook - PDF

Mathematics of Wave Propagation

About this book

Earthquakes, a plucked string, ocean waves crashing on the beach, the sound waves that allow us to recognize known voices. Waves are everywhere, and the propagation and classical properties of these apparently disparate phenomena can be described by the same mathematical methods: variational calculus, characteristics theory, and caustics. Taking a medium-by-medium approach, Julian Davis explains the mathematics needed to understand wave propagation in inviscid and viscous fluids, elastic solids, viscoelastic solids, and thermoelastic media, including hyperbolic partial differential equations and characteristics theory, which makes possible geometric solutions to nonlinear wave problems. The result is a clear and unified treatment of wave propagation that makes a diverse body of mathematics accessible to engineers, physicists, and applied mathematicians engaged in research on elasticity, aerodynamics, and fluid mechanics.


This book will particularly appeal to those working across specializations and those who seek the truly interdisciplinary understanding necessary to fully grasp waves and their behavior. By proceeding from concrete phenomena (e.g., the Doppler effect, the motion of sinusoidal waves, energy dissipation in viscous fluids, thermal stress) rather than abstract mathematical principles, Davis also creates a one-stop reference that will be prized by students of continuum mechanics and by mathematicians needing information on the physics of waves.

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Yes, you can access Mathematics of Wave Propagation by Julian L. Davis in PDF and/or ePUB format, as well as other popular books in Mathematics & Applied Mathematics. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover Page
  2. Half-title Page
  3. Title Page
  4. Copyright Page
  5. Contents
  6. Preface
  7. Chapter One: Physics of Propagating Waves
  8. Chapter Two: Partial Differential Equations of Wave Propagation
  9. Chapter Three: The Wave Equation
  10. Chapter Four: Wave Propagation in Fluids
  11. Chapter Five: Stress Waves in Elastic Solids
  12. Chapter Six: Stress Waves in Viscoelastic Solids
  13. Chapter Seven: Wave Propagation in Thermoelastic Media
  14. Chapter Eight: Water Waves
  15. Chapter Nine: Variational Methods in Wave Propagation
  16. Appendix: The Principle of Least Action
  17. Problems
  18. Bibliography
  19. Index