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Das Urheberrecht an bibliographischen und produktbeschreibenden Daten und an den bereitgestellten Bildern liegt bei Informazioni Editoriali, I.E. S.r.l., oder beim Herausgeber oder demjenigen, der die Genehmigung erteilt hat. Alle Rechte vorbehalten.
Dr. Charles K. Alexander is a Professor of Electrical and Computer Engineering at Cleveland State University, Cleveland, Ohio. He is also the Director of the Center for Research in Electronics and Aerospace Technology (CREATE). From 2002 until 2006 he was Dean of the Fenn College of Engineering. He has held the position of Dean of Engineering at Cleveland State University, California State University, Northridge, and Temple University (acting Dean for six years). He has held the position of Department Chair at Temple University and Tennessee Technological University as well as the position of Stocker Visiting Professor (an Endowed Chair) at Ohio University. He has held faculty status at all of the aforementioned Universities.
Inhaltsangabe
Part One - DC Circuits 1) Basic Concepts 2) Basic Laws 3) Methods of Analysis 4) Circuit Theorems 5) Operational Amplifiers 6) Capacitors and Inductors 7) First-Order Circuits 8) Second-Order Circuits Part Two - AC Circuits 9) Sinusoids and Phasors 10) Sinusoidal Steady-State Analysis 11) AC Power Analysis 12) Three-Phase Circuits 13) Magnetically Coupled Circuits 14) Frequency Response Part Three - Advanced Circuit Analysis 15) Introduction to the Laplace Transform 16) Applications of the Laplace Transform 17) The Fourier Series 18) Fourier Transform 19) Two-Port Networks
Part One - DC Circuits 1) Basic Concepts 2) Basic Laws 3) Methods of Analysis 4) Circuit Theorems 5) Operational Amplifiers 6) Capacitors and Inductors 7) First-Order Circuits 8) Second-Order Circuits Part Two - AC Circuits 9) Sinusoids and Phasors 10) Sinusoidal Steady-State Analysis 11) AC Power Analysis 12) Three-Phase Circuits 13) Magnetically Coupled Circuits 14) Frequency Response Part Three - Advanced Circuit Analysis 15) Introduction to the Laplace Transform 16) Applications of the Laplace Transform 17) The Fourier Series 18) Fourier Transform 19) Two-Port Networks
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