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Titlebook: EKC2008 Proceedings of the EU-Korea Conference on Science and Technology; Seung-Deog Yoo Conference proceedings 20081st edition Springer-V

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978-3-642-09892-5Springer-Verlag Berlin Heidelberg 2008
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Verification of Shell Elements Performance by Inserting 3-D Model: In Finite Elements Analysis with can not represent real design. To overcome this problem, 3-D solid elements are inserted in the shell elements by using Multiple Points Constraint method. With these calculations, new shape of shell elements is suggested for further calculations.
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Numerical Study on Blood Flow Characteristics of the Stenosed Blood Vessel with Periodic Acceleratioation phase angle and axial rotation speed. It is found that blood flow and wall shear stress are changed as variation of acceleration phase angle with the same periodic frequency also wall shear stress and blood flow rate are increased rapidly as increasing rotation speed.
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Conference proceedings 20081st edition better, especially in fields of science and technology. The focus of the conference is put on the topics: Computational Fluid Dynamics; Mechatronics and Mechanical Engineering; Information and Communications Technology; Life and Natural Sciences; Energy and Environmental Technology..
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each other better, especially in fields of science and technology. The focus of the conference is put on the topics: Computational Fluid Dynamics; Mechatronics and Mechanical Engineering; Information and Communications Technology; Life and Natural Sciences; Energy and Environmental Technology..978-3-642-09892-5978-3-540-85190-5
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https://doi.org/10.1007/978-3-030-11809-9typical applications. The article focuses on the basics of the techniques and points out progress achieved as well as current improvements. Listed references describe the simulation techniques and the individual applications in more detail.
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When Artificial Intelligence Meets Daoism, the more traditional in-plane suspension bridge and cantilever beam type architectures can be overcome. A SPST switch has been investigated and its ON-state insertion loss and return loss are less than 0.5 dB and greater than 15 dB, respectively; while OFF-state isolation is better than 30 dB, up to 12 GHz.
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