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Radiation and scattering of waves
~
Marcuvitz, Nathan.
Radiation and scattering of waves
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Radiation and scattering of waves/ Leopold B. Felsen, Nathan Marcuvitz.
作者:
Felsen, Leopold B.
其他作者:
Marcuvitz, Nathan.
出版者:
Piscataway, NJ :IEEE Press, : [1994],
面頁冊數:
1 online resource (xxxiv, 888 p.) :ill. :
附註:
Originally published: Englewood Cliffs, N.J. : Prentice-Hall, 1972, c1973.
標題:
Electromagnetic waves. -
電子資源:
http://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=5264502
ISBN:
9780470546307
Radiation and scattering of waves
Felsen, Leopold B.
Radiation and scattering of waves
[electronic resource] /Leopold B. Felsen, Nathan Marcuvitz. - Piscataway, NJ :IEEE Press,[1994] - 1 online resource (xxxiv, 888 p.) :ill. - IEEE Press series on electromagnetic waves. - IEEE Press series on electromagnetic waves..
Originally published: Englewood Cliffs, N.J. : Prentice-Hall, 1972, c1973.
Includes bibliographical references and indexes.
1. Space- and Time-Dependent Linear Fields. 1.1. Formulation of Vector Field and Scalar Potential Problems. 1.2. Plane Wave Field Representations. 1.3. Guided Wave (Oscillatory) Representations in Time. 1.4. Guided Wave Representations in Space. 1.5. Reduced Electromagnetic Field Equations. 1.6. Ray-Optic Approximations of Integral Representations. 1.7. Rap-Optic Approximations for Differential Equations -- 2. Network Formalism for Time-Harmonic Electromagnetic Fields in Uniform and Spherical Waveguide Regions. 2.2. Derivation of Transmission-Line Equations in Uniform Regions. 2.3. Scalarization and Modal Representation of Dyadic Green's Functions in Uniform Regions. 2.4. Solution of Uniform Transmission-Line Equations (Network Analysis). 2.5. Derivation of Transmission-Line Equations in Spherical Regions. 2.6. Scalarization and Modal Representation of Dyadic Green's Functions in Spherical Regions. 2.7. Solution of Spherical Transmission-Line Equations (Network Analysis).
This world-renowned classic by Professors Felsen and Marcuvitz continues to abound in timely and useful materialover 20 years after it was originally published. The book contains indispensable information that remains difficult to find anywhere else in the electromagnetics and acoustics literature, and it will be useful for many years to come. Of particular interest is Chapter 4, Asymptotic Evaluation of Integrals, which is appreciated and cited worldwide. It contains an in-depth description of asymptotic techniques and formulas useful to both engineers and physicists.
ISBN: 9780470546307
Source: 9780470546307IEEEhttp://ieeexplore.ieee.orgSubjects--Topical Terms:
598385
Electromagnetic waves.
Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: QC670 / .F38 1994
Dewey Class. No.: 530.1/41
Radiation and scattering of waves
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Leopold B. Felsen, Nathan Marcuvitz.
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1. Space- and Time-Dependent Linear Fields. 1.1. Formulation of Vector Field and Scalar Potential Problems. 1.2. Plane Wave Field Representations. 1.3. Guided Wave (Oscillatory) Representations in Time. 1.4. Guided Wave Representations in Space. 1.5. Reduced Electromagnetic Field Equations. 1.6. Ray-Optic Approximations of Integral Representations. 1.7. Rap-Optic Approximations for Differential Equations -- 2. Network Formalism for Time-Harmonic Electromagnetic Fields in Uniform and Spherical Waveguide Regions. 2.2. Derivation of Transmission-Line Equations in Uniform Regions. 2.3. Scalarization and Modal Representation of Dyadic Green's Functions in Uniform Regions. 2.4. Solution of Uniform Transmission-Line Equations (Network Analysis). 2.5. Derivation of Transmission-Line Equations in Spherical Regions. 2.6. Scalarization and Modal Representation of Dyadic Green's Functions in Spherical Regions. 2.7. Solution of Spherical Transmission-Line Equations (Network Analysis).
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This world-renowned classic by Professors Felsen and Marcuvitz continues to abound in timely and useful materialover 20 years after it was originally published. The book contains indispensable information that remains difficult to find anywhere else in the electromagnetics and acoustics literature, and it will be useful for many years to come. Of particular interest is Chapter 4, Asymptotic Evaluation of Integrals, which is appreciated and cited worldwide. It contains an in-depth description of asymptotic techniques and formulas useful to both engineers and physicists.
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Key features include unified treatment of radiation, diffraction, and scattering problems in electromagnetics, acoustics, and plasma-like media; comprehensive coverage of physical interpretations for wave processes; indispensable information on alternative representations and asymptotics - not found anywhere else; and invaluable coverage of transients particularly applicable to advances in high-speed electronics and extra-wideband radar. This book will be of interest to students, engineers, and physicists involved in electromagnetics and acoustics. Makes an important reference for graduate classes.
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