Acoustic microscopy fundamentals and applications /

The only updated resource on acoustic microscopy covers its use in a range of applications spanning the fields of physics, materials science, electrical engineering, medicine, and research and industry. Acoustic Microscopy offers detailed coverage of: acoustic field structure; output signal formatio...

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Bibliographic Details
Main Authors: Maev, R. G. Roman Grigorʹevich
Corporate Authors: Wiley InterScience Online service
Published:
Literature type: Electronic eBook
Language: English
Subjects:
Online Access: http://onlinelibrary.wiley.com/book/10.1002/9783527623136
Summary: The only updated resource on acoustic microscopy covers its use in a range of applications spanning the fields of physics, materials science, electrical engineering, medicine, and research and industry. Acoustic Microscopy offers detailed coverage of: acoustic field structure; output signal formation in transmission raster acoustic microscopes; non-linear acoustic effects; visco-elastic properties and microstructure of model systems and composites; polymer composite materials; microstructure and physical-mechanical properties of biological tissues; and more Acoustic Microscopy is an essentia
Carrier Form: 1 online resource (xviii, 273 pages) : illustrations
Bibliography: Includes bibliographical references and index.
ISBN: 9783527623136
3527623132
9783527623143 (electronic bk.)
3527623140 (electronic bk.)
128194713X
9781281947130
Index Number: QH212
CLC: TH742
Contents: Acoustic Microscopy; Contents; Foreword; Preface; Introductory Comments; Introduction; 1 Scanning Acoustic Microscopy. Physical Principles and Methods. Current Development; 2 Acoustic Field Structure in a Lens System of a Scanning Acoustic Microscope; 3 Output Signal Formation in a Transmission Raster Acoustic Microscope; 4 Quantitative Acoustic Microscopy Based on Lateral Mechanical Scanning; 5 Acoustic Microscopy and Nonlinear Acoustic Effects; 6 Investigation of the Local Properties and Microstructure of Model Systems and Composites by the Acoustic Microscopy Methods.