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Numerical analysis --- 519.6 --- 681.3*G1 --- Computational mathematics. Numerical analysis. Computer programming --- 681.3*G1 Numerical analysis --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Analyse numérique. --- Numerical analysis. --- Mathématiques --- Analyse numérique --- Mathématiques --- Congresses
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Numerical analysis --- 519.6 --- 681.3*G1 --- Computational mathematics. Numerical analysis. Computer programming --- Conferences - Meetings --- 681.3*G1 Numerical analysis --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Analyse numérique. --- Analyse numérique.
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Numerical analysis --- 519.6 --- 681.3*G1 --- Computational mathematics. Numerical analysis. Computer programming --- 681.3*G1 Numerical analysis --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Analyse numérique. --- Itération (mathématiques) --- Iterative methods (Mathematics) --- Analyse numérique --- Numerical analysis. --- Itération (mathématiques) --- Equations differentielles ordinaires --- Methodes numeriques
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Classical Circuit Theory provides readers with the fundamental, analytic properties of linear circuits that are important to the design of conventional and non-conventional circuits in modern communication systems. These properties include the relations between phase and gain, between the real and imaginary parts, and between phase and group delay. They also include the fundamental limitations on gain and bandwidth, which are important in broadband matching in amplifier design. The idea that an impedance function is a positive real function and that a transfer function is bounded-real, forms the basis for analytic design of all conventional filters. At the same time, mathematical programming tools are now widely available so that design of non-conventional circuits by optimization is but a few mouse clicks away. Every new concept within the material is illustrated with one or more examples. There are exercises and problems at the end of the chapters. Some may be suitable for term projects. The design techniques presented are also illustrated step by step with easy-to-follow examples.
Electric circuit analysis. --- Electric circuits, Linear --- Design and construction. --- Mathematics. --- Linear electric circuits --- Circuit analysis, Electric --- Electric circuits --- Electric network analysis --- Numerical analysis --- Congresses. --- Systems engineering. --- Electronics. --- Circuits and Systems. --- Electronics and Microelectronics, Instrumentation. --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Electrical engineering --- Physical sciences --- Design and construction --- Electronic circuits. --- Microelectronics. --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Electron-tube circuits --- Electron tubes --- Iterative methods (Mathematics) --- Analyse numérique. --- Équations aux dérivées partielles --- Itération (mathématiques) --- 681.3 <063> --- 51 --- 681.3*G1 --- 681.3*G1 Numerical analysis --- Computerwetenschap--Congressen --- Design. --- Analyse numérique. --- Équations aux dérivées partielles --- Itération (mathématiques)
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519.6 --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Computational mathematics. Numerical analysis. Computer programming --- Numerical solutions of differential equations --- Analyse numérique. --- Numerical analysis --- Analyse numérique --- Numerical analysis. --- Equations differentielles --- Equations aux derivees partielles --- Resolution numerique --- Methodes numeriques
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