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Titlebook: Advances in Acoustic Microscopy; Volume 2 Andrew Briggs,Walter Arnold Book 1996 Springer Science+Business Media New York 1996 biology.mater

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發(fā)表于 2025-3-21 18:45:08 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Advances in Acoustic Microscopy
期刊簡稱Volume 2
影響因子2023Andrew Briggs,Walter Arnold
視頻videohttp://file.papertrans.cn/147/146602/146602.mp4
學(xué)科分類Advances in Acoustic Microscopy
圖書封面Titlebook: Advances in Acoustic Microscopy; Volume 2 Andrew Briggs,Walter Arnold Book 1996 Springer Science+Business Media New York 1996 biology.mater
影響因子This is the second volume of Advances in Acoustic Microscopy. It continues the aim of presenting applications and developments of techniques that are related to high-resolution acoustic imaging. We are very grateful to the authors who have devoted considerable time to preparing these chapters, each of which describes a field of growing importance. Laboratories that have high-performance acoustic microscopes are frequently asked to examine samples for which the highest available resolution is not necessary, and the ability to penetrate opaque layers is more significant. Such applications can be thought of as bridging the gap be- tween acoustic microscopy at low gigahertz frequencies, and on the one hand nondestructive testing of materials at low megahertz frequencies and on the other hand medical ultrasonic imaging at low megahertz frequencies. Commercial acoustic microscopes are becoming increasingly available and popular for such applications. We are therefore delighted to be able to begin the volume with chapters from each of those two fields. The first chapter, by Gabriele Pfannschmidt, describes uses of acoustic microscopy in the semiconductor industry. It provides a splendid b
Pindex Book 1996
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Osteocyte Isolation and Culturepth of a few hundreds of wavelengths. Typically the abdomen of an adult is examined using a frequency of 3.5 MHz and superficial blood vessels such as the carotids are observed at 7.5 or 10 MHz. The development of ultrasonic techniques in medicine has been essentially linked to relatively low-freque
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Andrew P. Mee,Judith A. Hoylandve testing). In such conditions, the acoustic beam can be distorted and redirected, so that optimal focusing cannot be achieved. Compensation for these two kinds of distortions must be self-adaptive because the designer has no . knowledge of them. The use of a time reversal mirror (TRM) represents a
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Interaction of Acoustic Waves with Solid Surfaces,and finding application-oriented solutions. Their work has contributed to establishing offshore wind energy as a reliable, sustainable and economical long term source of energy..978-3-662-57120-0978-3-662-53179-2
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Ultrasonic Focusing with Time Reversal Mirrors,n the perimarine area of the hinterland. In each case, however, interpretation has to be done very carefully to separate the real changes of sea level from other possible factors such as rate of sedimentation, compaction, influence from the hinterland, and the inflow of fresh water from the rivers.
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