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Rays Waves And Scattering Topics In Classical Mathematical Physics John A Adam

  • SKU: BELL-34751918
Rays Waves And Scattering Topics In Classical Mathematical Physics John A Adam
$ 31.00 $ 45.00 (-31%)

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Rays Waves And Scattering Topics In Classical Mathematical Physics John A Adam instant download after payment.

Publisher: PrincetonUP
File Extension: PDF
File size: 4.49 MB
Author: John A. Adam
ISBN: FWEYDWAAQBAJ
Language: English
Year: 2017

Product desciption

Rays Waves And Scattering Topics In Classical Mathematical Physics John A Adam by John A. Adam FWEYDWAAQBAJ instant download after payment.

This one-of-a-kind book presents many of the mathematical concepts, structures, and techniques used in the study of rays, waves, and scattering. Panoramic in scope, it includes discussions of how ocean waves are refracted around islands and underwater ridges, how seismic waves are refracted in the earth's interior, how atmospheric waves are scattered by mountains and ridges, how the scattering of light waves produces the blue sky, and meteorological phenomena such as rainbows and coronas.Rays, Waves, and Scattering is a valuable resource for practitioners, graduate students, and advanced undergraduates in applied mathematics, theoretical physics, and engineering. Bridging the gap between advanced treatments of the subject written for specialists and less mathematical books aimed at beginners, this unique mathematical compendium features problems and exercises throughout that are geared to various levels of sophistication, covering everything from Ptolemy's theorem to Airy integrals (as well as more technical material), and several informative appendixes.Provides a panoramic look at wave motion in many different contextsFeatures problems and exercises throughoutIncludes numerous appendixes, some on topics not often coveredAn ideal reference book for practitionersCan also serve as a supplemental text in classical applied mathematics, particularly wave theory and mathematical methods in physics and engineeringAccessible to anyone with a strong background in ordinary differential equations, partial differential equations, and functions of a complex variable

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