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Scattering Of Wedges And Cones With Impedance Boundary Condi

-numerical approaches for wave diffraction by impedance wedges or cones. This text includes calculations of the diffraction or excitation;

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Canonical Problems in Scattering and Potential Theory Part 1

problems for structures with cavities and edges. The second volume, Acoustic and Electromagnetic Diffraction by Canonical Structures, examines the;

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Canonical Problems in Scattering and Potential Theory Part 1

problems for structures with cavities and edges. The second volume, Acoustic and Electromagnetic Diffraction by Canonical Structures, examines the;

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Theory of Edge Diffraction in Electromagnetics

practical application, and its validation by the mathematical theory of diffraction. The derived analytic expressions are convenient for numerical;

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Stationary Diffraction by Wedges

, in particular to diffraction problems in angles and to the study of trapped modes on a sloping beach. Giving the reader the opportunity to;

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Scattering and Diffraction by Wedges 1

with the use of the Wiener-Hopf technique. In particular, the general mathematical methodology is very ingenious and original. It is based on;

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Canonical Problems in Scattering and Potential Theory Part II

problems for structures with cavities and edges. The second volume, Acoustic and Electromagnetic Diffraction by Canonical Structures, examines the;

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X-Ray Diffraction

High-resolution x-ray diffraction and scattering is a key tool for structure analysis not only in bulk materials but also at surfaces and;

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Basic Concepts of X-Ray Diffraction

Authored by a university professor deeply involved in X-ray diffraction-related research, this textbook is based on his lectures given;

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X-Ray Diffraction

x-ray diffraction, and the author has not discussed the problem of determining crystal structures. Rather the focus is on the great variety;

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Electromagnetic Radiation, Scattering, and Diffraction

Electromagnetic Radiation, Scattering, and Diffraction Discover a graduate-level text for students specializing in electromagnetic wave;

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Modern Electromagnetic Scattering Theory with Applications

This self-contained book gives fundamental knowledge about scattering and diffraction of electromagnetic waves and fills the gap between;

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Asymptotic Diffraction Theory and Nuclear Scattering

in this complex impact plane in the asymptotic limit. Several new rainbow phenomena are also discussed and illustrated. Written by Nobel Prize;

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Scattering and Diffraction by Wedges 2

with the use of the Wiener-Hopf technique. In particular, the general mathematical methodology is very ingenious and original. It is based on;

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Synchrotron Radiation Research

. Techniques are covered in four sections (after an overview) on absorption, photoemission spectroscopy, ion spectroscopy, and diffraction and;

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Structure from Diffraction Methods

of materials at longer length scales than those probed by powder diffraction methods. Addressing both physical principals and recent advances in their;

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Surface Acoustic Waves in Inhomogeneous Media

careful consideration. The most important results of surface wave scattering by local defects such as grooves, random roughness and elastic wedges;

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Diffraction Optics of Complex-Structured Periodic Media

Probing matter with beams of photons, neutrons and electrons provides the main source of information about both the microscopic and;

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Principles of Optics

been reprinted with a special foreword by Sir Peter Knight. The seventh edition was the first thorough revision and expansion of this;

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Principles of Materials Characterization and Metrology

. This is followed by ion-scattering methods, optics, optical diffraction, microscopy, and ellipsometry. Generalization of Fraunhofer;

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Principles of Materials Characterization and Metrology

. This is followed by ion-scattering methods, optics, optical diffraction, microscopy, and ellipsometry. Generalization of Fraunhofer;

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X-ray Scattering From Semiconductors (2nd Edition)

instrumental aberrations caused by real experiments. The main emphasis concerns the analysis of thin films and multilayers, primarily semiconductors;

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Diffraction Effects in Semiclassical Scattering

, rainbows, glories, orbiting and resonances. Besides giving rise to beautiful optical effects in the atmosphere, critical effects have important;

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Diffraction Effects in Semiclassical Scattering

, rainbows, glories, orbiting and resonances. Besides giving rise to beautiful optical effects in the atmosphere, critical effects have important;

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Fundamentals of the Physical Theory of Diffraction

edge waves. The theory is demonstrated with examples of the diffraction of acoustic and electromagnetic waves at perfectly reflecting objects;

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Physical Theory of Diffraction

of elementary edge waves. The theory is demonstrated with examples of the diffraction of acoustic and electromagnetic waves at perfectly reflecting;

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Principles Of Neutron Scattering

and dynamics in crystalline solids, simple liquids and molecular fluids by diffraction techniques, including small-angle scattering and;

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