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Linear and Nonlinear Circuits: Basic and Advanced Concepts : Volume 2 / by Mauro Parodi, Marco Storace

By: Parodi, Mauro
Contributor(s): SpringerLink (Online service) | Storace, Marco., autor
Material type: materialTypeLabelE-bookSeries: (Lecture Notes in Electrical Engineering, 1876-1100; 620).Publisher: Cham : Springer, 2020Edition: Primera edición 2020.Description: 1 recurso en línea (XV, 515 páginas) : 455 ilustraciones, 31 ilustraciones a color.ISBN: 9783030350444.Subject: Circuitos eléctricos no linealesOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Basic concepts: two-terminal linear elements with memory and first-order linear circuits -- Advanced concepts: first-order nonlinear circuits -- Basic concepts: linear two-ports with memory and higher-order linear circuits -- Advanced concepts: Higher-order nonlinear circuits - State equations and equilibrium points -- Basic concepts: Analysis of LTI circuits in sinusoidal steady state -- Advanced concepts: Analysis of nonlinear oscillators.
In: Springer eBooksAbstract: This book provides readers with the necessary background information and advanced concepts in the field of circuits, at the crossroads between physics, mathematics and system theory. It covers various engineering subfields, such as electrical devices and circuits, and their electronic counterparts. Based on the idea that a modern university course should provide students with conceptual tools to understand the behavior of both linear and nonlinear circuits, to approach current problems posed by new, cutting-edge devices and to address future developments and challenges, the book places equal emphasis on linear and nonlinear, two‐terminal and multi‐terminal, as well as active and passive circuit components. This second volume focuses on dynamical circuits, which are characterized by time evolution and by the concept of state. The content is divided into a set of introductory and a set of advanced‐level topics, mirroring the approach used in the previously published volume. Whenever possible, circuits are compared to physical systems of different natures (e.g. mechanical or biological) that exhibit the same dynamical behavior. The book also features a wealth of examples and numerous solved problems. Further topics, such as a more general framing of linear and nonlinear components, will be discussed in volume 3.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TK7888.4 2020 EB (Browse shelf(Opens below)) Acceso electrónico eBook28022122
Total holds: 0

Basic concepts: two-terminal linear elements with memory and first-order linear circuits -- Advanced concepts: first-order nonlinear circuits -- Basic concepts: linear two-ports with memory and higher-order linear circuits -- Advanced concepts: Higher-order nonlinear circuits - State equations and equilibrium points -- Basic concepts: Analysis of LTI circuits in sinusoidal steady state -- Advanced concepts: Analysis of nonlinear oscillators.

This book provides readers with the necessary background information and advanced concepts in the field of circuits, at the crossroads between physics, mathematics and system theory. It covers various engineering subfields, such as electrical devices and circuits, and their electronic counterparts. Based on the idea that a modern university course should provide students with conceptual tools to understand the behavior of both linear and nonlinear circuits, to approach current problems posed by new, cutting-edge devices and to address future developments and challenges, the book places equal emphasis on linear and nonlinear, two‐terminal and multi‐terminal, as well as active and passive circuit components. This second volume focuses on dynamical circuits, which are characterized by time evolution and by the concept of state. The content is divided into a set of introductory and a set of advanced‐level topics, mirroring the approach used in the previously published volume. Whenever possible, circuits are compared to physical systems of different natures (e.g. mechanical or biological) that exhibit the same dynamical behavior. The book also features a wealth of examples and numerous solved problems. Further topics, such as a more general framing of linear and nonlinear components, will be discussed in volume 3.

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