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Titlebook: Microwave NDT; N. Ida Book 1992 Springer Science+Business Media Dordrecht 1992 Metall.Sensor.Transmission.composite.environment.microwave.

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發(fā)表于 2025-3-21 16:42:54 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Microwave NDT
編輯N. Ida
視頻videohttp://file.papertrans.cn/634/633585/633585.mp4
叢書名稱Developments in Electromagnetic Theory and Applications
圖書封面Titlebook: Microwave NDT;  N. Ida Book 1992 Springer Science+Business Media Dordrecht 1992 Metall.Sensor.Transmission.composite.environment.microwave.
描述Microwave testing has been paid only scant attention in theliterature as a method for nondestructive testing of materials, yet itoffers some attractive features, especially for the testing ofcomposite and other non-metallic materials. .Microwave techniques have been used in a large number of applicationsthat can be classified as nondestructive testing applications, rangingfrom large scale remote sensing to detection of tumors in the body..This volume describes a unified approach to microwave nondestructivetesting by presenting the three essential components of testing:theory, practice, and modelling. While recognizing that each of thesesubjects is wide enough to justify a volume of its own, thepresentation of the three topics together shows that these areinterrelated and should be practiced together. While few will argueagainst a good theoretical background, modelling and simulation of thetesting environment is seldom part of the NDT training in any method,but particularly so in microwave testing. .The text is devided in four parts. The first part presents the fieldtheory background necessary for understanding the microwave domain.The second part treats microwave measurements as we
出版日期Book 1992
關鍵詞Metall; Sensor; Transmission; composite; environment; microwave; modeling; modelling; physics; sensors; simula
版次1
doihttps://doi.org/10.1007/978-94-011-2739-4
isbn_softcover978-94-010-5215-3
isbn_ebook978-94-011-2739-4
copyrightSpringer Science+Business Media Dordrecht 1992
The information of publication is updating

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沙發(fā)
發(fā)表于 2025-3-21 21:20:52 | 只看該作者
Microwave Measurement Techniques The measurement environment at microwave frequencies is also unique. Some parameters cannot be measured directly and require specialized techniques. Power, for example, is always measured indirectly by use of thermal effects or even mechanical means.
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發(fā)表于 2025-3-22 00:34:37 | 只看該作者
attractive features, especially for the testing ofcomposite and other non-metallic materials. .Microwave techniques have been used in a large number of applicationsthat can be classified as nondestructive testing applications, rangingfrom large scale remote sensing to detection of tumors in the bod
地板
發(fā)表于 2025-3-22 06:38:52 | 只看該作者
Testing by Monitoring Material Propertiesauses changes in reflection, transmission and attenuation constants. These can be tested using the methods described in the previous two chapters or, as will be shown shortly, using resonant techniques.
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Modeling of the Time-Dependent Wave Equationusions. Finite element methods are much more efficient for time-harmonic fields and will be discussed in detail in the following chapter. Here we merely mention that the method can be used in conjunction with the finite difference method.
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Transmission Lines, Waveguides, and Resonant Cavitiesill view the transmission line, the generator, and the load in general terms. For example, a transmission line can be a dielectric slab or two wires, while the generator is a general source -either a true generator or the output from another transmission line.
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N. Idartly including business models. .Since design reuse must not be restricted to digital components,mixed- signal and analog reuse approaches are also presented. Inparallel to the digital domain, this area covers research in reusedatabase design. Design verification and legal aspects are twoimportant topics that978-1-4613-7349-0978-1-4615-5159-1
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發(fā)表于 2025-3-23 07:45:48 | 只看該作者
N. Idatative of typical VM modifications. We demonstrate its effectiveness by applying it to a set of real test cases of the Pharo VM. It allowed us to find several issues that were unknown to the VM development team. Our approach shows promising results to test simulation-based?VM?generator frameworks.
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