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河南大学:《模拟电子技术基础》课程PPT教学课件(信号与系统)ch9.1 信号产生电路——正弦波振荡电路的振荡条件
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Rehabilitation Engineering, Science and Technology 119.1 Rehabilitation Concepts 119.2 Engineering Concepts in Sensory Rehabilitation 119.3 Engineering Concepts in Motor Rehabilitation Charles J. Robinson 119.4 Engineering Concepts in Communications Disorders
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河南大学:《模拟电子技术基础》课程PPT教学课件(信号与系统)ch8.4 信号的运算与处理电路——PN结的单向导电性
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118 Computer Design for pennsylvania State University Biomedical applications The Finite Difference Time Domain(FDTD)[Yee, 1966; Kunz and Luebbers, 1993; Taflove, 1995 is a numerical method for the solution of electromagnetic field interaction problems. It utilizes a geometry mesh, usually of
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河南大学:《模拟电子技术基础》课程PPT教学课件(信号与系统)ch8.2 信号的运算与处理电路——实际运放电路的误差分析
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Integration.Smart/Optical Cards Matthew e. Baretich 117.2 Hospital Information Systems niversity of Colorado The Clinical Environment Healthcare Codes and Standards 117.1 Clinical Information Systems Luis Kun The main objective of this section is to provide the reader with a summary of areas that relate to clinical
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Bioelectronics and Joseph D. Bronzino finity College/Biomedical Allience Instruments for Central Connecticut(BOACON) Edward J. Berbari Purdue University 115.1 The Electroencephalogram Philip L. Johnson
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107 Industrial Illuminating Systems 107.1 New Concepts in Designing an Industrial Iluminating Syst Determination of Illuminance Levels. Illuminatio Computational Methods 107.2 Factors Affecting Industrial
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Vehicular Systems 106.1 Introduction Design Considerations 106.3 Land Transportation Classifications 106.4 Propulsion inda sue boehmer 106.5 Microprocessor Controls 106.6 Monitoring and Diagnostics
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铁磁共振 微波铁磁共振(FMR)是指铁磁介质处在频率为∫的微波电磁场中,当改变外加恒 磁场H的大小时,发生的共振吸收现象。铁磁共振观察的对象是铁磁介质中的未偶电 子,可以说它是铁磁介质中的电子自旋共振。铁磁共振不仅是磁性材料在微波技术应用 上的物理基础,也是研究其它宏观性能与微观结构的有效手段
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