Selasa, 04 Desember 2012

[X697.Ebook] Download Wave Propagation and Scattering in Random Media, by Akira Ishimaru

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Wave Propagation and Scattering in Random Media, by Akira Ishimaru

Wave Propagation and Scattering in Random Media, by Akira Ishimaru



Wave Propagation and Scattering in Random Media, by Akira Ishimaru

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Wave Propagation and Scattering in Random Media, by Akira Ishimaru

A volume in the IEEE/OUP Series on Electromagnetic Wave Theory Donald G. Dudley, Series Editor This IEEE Classic Reissue presents a unified introduction to the fundamental theories and applications of wave propagation and scattering in random media. Now for the first time, the two volumes of Wave Propagation and Scattering in Random Media previously published by Academic Press in 1978 are combined into one comprehensive volume. This book presents a clear picture of how waves interact with the atmosphere, terrain, ocean, turbulence, aerosols, rain, snow, biological tissues, composite material, and other media. The theories presented will enable you to solve a variety of problems relating to clutter, interference, imaging, object detection, and communication theory for various media. This book is expressly designed for engineers and scientists who have an interest in optical, microwave, or acoustic wave propagation and scattering. Topics covered include:

  • Wave characteristics in aerosols and hydrometeors
  • Optical and acoustic scattering in sea water
  • Scattering from biological materials
  • Pulse scattering and beam wave propagation in such media
  • Optical diffusion in tissues and blood
  • Transport and radiative transfer theory
  • Kubelka--Munk flux theory and plane-parallel problem
  • Multiple scattering theory
  • Wave fluctuations in turbulence
  • Strong fluctuation theory
  • Rough surface scattering
  • Remote sensing and inversion techniques
  • Imaging through various media

About the IEEE/OUP Series on Electromagnetic Wave Theory Formerly the IEEE Press Series on Electromagnetic Waves, this joint series between IEEE Press and Oxford University Press offers outstanding coverage of the field with new titles as well as reprintings and revisions of recognized classics that maintain long-term archival significance in electromagnetic waves and applications. Designed specifically for graduate students, practicing engineers, and researchers, this series provides affordable volumes that explore electromagnetic waves and applications beyond the undergraduate level. See page il of the front matter for a listing of books in this series.

  • Sales Rank: #2182415 in Books
  • Brand: Brand: Wiley-IEEE Press
  • Published on: 1999-02-04
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.29" h x 1.48" w x 5.98" l, 1.97 pounds
  • Binding: Paperback
  • 600 pages
Features
  • Used Book in Good Condition

From the Back Cover
Electrical Engineering
Wave Propagation and Scattering in Random Media

A volume in the IEEE/OUP Series on Electromagnetic Wave Theory Donald G. Dudley, Series Editor This IEEE Classic Reissue presents a unified introduction to the fundamental theories and applications of wave propagation and scattering in random media. Now for the first time, the two volumes of Wave Propagation and Scattering in Random Media previously published by Academic Press in 1978 are combined into one comprehensive volume. This book presents a clear picture of how waves interact with the atmosphere, terrain, ocean, turbulence, aerosols, rain, snow, biological tissues, composite material, and other media. The theories presented will enable you to solve a variety of problems relating to clutter, interference, imaging, object detection, and communication theory for various media. This book is expressly designed for engineers and scientists who have an interest in optical, microwave, or acoustic wave propagation and scattering. Topics covered include:

  • Wave characteristics in aerosols and hydrometeors
  • Optical and acoustic scattering in sea water
  • Scattering from biological materials
  • Pulse scattering and beam wave propagation in such media
  • Optical diffusion in tissues and blood
  • Transport and radiative transfer theory
  • Kubelka—Munk flux theory and plane-parallel problem
  • Multiple scattering theory
  • Wave fluctuations in turbulence
  • Strong fluctuation theory
  • Rough surface scattering
  • Remote sensing and inversion techniques
  • Imaging through various media
About the IEEE/OUP Series on Electromagnetic Wave Theory Formerly the IEEE Press Series on Electromagnetic Waves, this joint series between IEEE Press and Oxford University Press offers outstanding coverage of the field with new titles as well as reprintings and revisions of recognized classics that maintain long-term archival significance in electromagnetic waves and applications. Designed specifically for graduate students, practicing engineers, and researchers, this series provides affordable volumes that explore electromagnetic waves and applications beyond the undergraduate level. See page il of the front matter for a listing of books in this series.

About the Author
Akira Ishimaru is Boeing Martin Professor in the College of Engineering, University of Washington. He has conducted studies in many areas of antennas and propagation, including pattern synthesis, unequally spaced arrays, leaky waves, periodic structures, anisotropic media, and waves in random media, and has contributed to a number of volumes in the field. Dr. Ishimaru is a Fellow of the IEEE and a Fellow of the OSA. He has served as chairman of Commission B of USNC/URSI. He is the founding editor of the journal, Waves in Random Media, Institute of Physics, United Kingdom. He received the 1968 IEEE Region VI Achievement Award, the IEEE Centennial Medal in 1984, and the Distinguished Achievement Award from the IEEE Antennas and Propagation Society in 1995. He is a member of the National Academy of Engineering.

Most helpful customer reviews

2 of 4 people found the following review helpful.
Classic of its own field
By S. C. Samarasekera
A a classic in its area this book is not only of historical value but also gives a good introduction to the field. A good companion book to any of the modern ones. The conventions used are the mathematicians and physicist conventions but engineering postgrads can easily adapt to this book.

2 of 37 people found the following review helpful.
scattering of gaussian beam
By A Customer
AN INCIDENT GAUSSIAN BEAM IMPINGING ON A BIG DIELECRIC MEDIUM.

See all 2 customer reviews...

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