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Titlebook: Novel Technologies for Microwave and Millimeter — Wave Applications; Jean-Fu Kiang Book 2004 Springer Science+Business Media New York 2004

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Micromachined Devices for Wireless Communication,actor, tunable micromachined capacitors, low-loss micromechanical switches, microscale vibrating mechanical resonators, thin-film bulk acoustic resonators(FBARs), micromachined low-loss microwave and millimeter wave filters, and miniaturized antennas for millimeter wave applications.
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Microstrip Lines with a Periodically Corrugated Ground Plane,ned by applying method of moments to solve the integral equations. Various geometrical and electrical parameters affecting the pass-band/stop-band characteristics of the first stop-band are studied. Singularity distribution in the complex plane is also inspected.
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Finite Element Methods for Microwave Engineering,on, .(curl)-conforming vector finite elements, fast and efficient matrix solution techniques, accurate mesh truncation methods, a posteriori error estimate and adaptive mesh refinement, and fast frequency sweep algorithms. Research and development activities in these areas are also briefly reviewed.
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major issues, current trend and future challenges. Useful references are also listed for further reading. .Novel Technologies for Microwave and Millimeter-Wave Applications. is suitable as a textbook for senior or graduate courses in microwave engineering.978-1-4419-5401-5978-1-4757-4156-8
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Book 2004 learning process from concepts to practices, from component design to system architecture, and from small scale to large scale. Each chapter focuses on a topic and is organized to be self-sufficient. Contents in each chapter include concise description of relevant background information, major issu
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Generation of Wideband Electromagnetic Responses Using Early-Time and Low-Frequency Data,e for the polynomial coefficients by data fitting. Once the unknown polynomial coefficients are obtained, data of interest are concurrently extrapolated in both domains. This approach is attractive because expansions with a few terms give good extrapolation in both time and frequency domains, with minimum computation time.
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