This study guide is designed for both groups of instructors and students enrolled in advanced electrical circuit analysis courses. The textbook includes problems with detailed solutions to help students understand the subjects in depth. It features partially solved exercises that encourage practice while guiding students through the problem-solving process and providing hints for the required formulas. Additionally, it offers exercises with final answers to motivate students to practice independently, while also aiding instructors in creating tests or quizzes. The material covered in the book…mehr
This study guide is designed for both groups of instructors and students enrolled in advanced electrical circuit analysis courses. The textbook includes problems with detailed solutions to help students understand the subjects in depth. It features partially solved exercises that encourage practice while guiding students through the problem-solving process and providing hints for the required formulas. Additionally, it offers exercises with final answers to motivate students to practice independently, while also aiding instructors in creating tests or quizzes. The material covered in the book includes the state equations of electrical circuits; circuit analysis in Laplace domain; network function and its applications and theorems in Laplace domain; zero and nonzero natural frequencies of a circuit, zeros and poles of network function of a circuit, and damping status of an electrical circuit; linear time-invariant (LTI) networks and applications of Tellegen s Theorem for LTI networks; impedance, admittance, hybrid, and transmission matrices of a two-port network; and series, parallel, and cascade connections of two-port networks.
Artikelnr. des Verlages: 89562765, 978-3-032-07489-8
2. Aufl.
Seitenzahl: 300
Erscheinungstermin: 27. November 2025
Englisch
Abmessung: 279mm x 210mm
ISBN-13: 9783032074898
ISBN-10: 3032074894
Artikelnr.: 75304040
Herstellerkennzeichnung
Springer-Verlag GmbH
Tiergartenstr. 17
69121 Heidelberg
ProductSafety@springernature.com
Autorenporträt
Dr. Mehdi Rahmani-Andebili is an Assistant Professor with the Department of Electrical and Computer Engineering at the University of Alabama. He received his first M.Sc. and Ph.D. degrees in Electrical Engineering from Tarbiat Modares University and Clemson University in 2011 and 2016, respectively, and his second Ph.D. (2nd M.Sc.) degree in Physics and Astronomy from the University of Alabama in Huntsville in 2019. Moreover, he was a Postdoctoral Fellow at the Sharif University of Technology during 2016-2017. As a professor, he has taught a wide selection of courses and labs including Power System Analysis, Electric Machines, Feedback Control Systems Analysis and Design, Signals and Systems, Electromagnetics, Electronics, Digital Logic, Industrial Electronics, Renewable Distributed Generation and Storage, AC Electrical Circuits Analysis, DC Electrical Circuits Analysis, Electrical Circuits and Devices, Fundamental of Electrical Engineering, Essentials of Electrical Engineering Technology, and Algebra and Calculus-Based Physics. Dr. Rahmani-Andebili has over 300 single-author or first-author publications including journal papers, conference papers, textbooks, books, and book chapters that are about the fields of Electrical Engineering, Power Engineering, Physics, Mathematics, and Computer Programming. He is an IEEE Senior Member and a permanent reviewer of many reputable journals. His research areas include Smart Grid, Applications of Artificial Intelligence in Planning and Operation of Power Systems, Integration of Renewables and Energy Storages into Power Systems, Energy Scheduling and Demand-Side Management, Electric Vehicles and Distributed Generation, and Advanced Optimization Techniques in Power System Studies.
Inhaltsangabe
Problems: State Equations of Electrical Circuits.- Solutions to Problems: State Equations of Electrical Circuits.- Problems: Laplace Transform and Network Function.- Solutions to Problems: Laplace Transform and Network Function.- Problems: Natural Frequencies of Electrical Circuits.- Solutions to Problems: Natural Frequencies of Electrical Circuits.- Problems: Network Theorems (Tellegen's and Tellegen's Invariant Network Theorems).- Solutions to Problems: Network Theorems (Tellegen's and Tellegen's Invariant Network Theorems).- Problems: Two-Port Networks.- Solutions to Problems: Two-Port Networks.
Problems: State Equations of Electrical Circuits.- Solutions to Problems: State Equations of Electrical Circuits.- Problems: Laplace Transform and Network Function.- Solutions to Problems: Laplace Transform and Network Function.- Problems: Natural Frequencies of Electrical Circuits.- Solutions to Problems: Natural Frequencies of Electrical Circuits.- Problems: Network Theorems (Tellegen's and Tellegen's Invariant Network Theorems).- Solutions to Problems: Network Theorems (Tellegen's and Tellegen's Invariant Network Theorems).- Problems: Two-Port Networks.- Solutions to Problems: Two-Port Networks.
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