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  • Fundamentals of Electrical Engineering

    Fundamentals of Electrical Engineering by Bobrow, Leonard S.;

    Series: The Oxford Series in Electrical and Computer Engineering;

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      • Publisher's listprice GBP 265.99
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        120 094 Ft (114 375 Ft + 5% VAT)
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      • Discounted price 108 084 Ft (102 938 Ft + 5% VAT)

    120 094 Ft

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    Product details:

    • Edition number 2
    • Publisher OUP USA
    • Date of Publication 20 June 1996

    • ISBN 9780195105094
    • Binding Hardback
    • No. of pages1184 pages
    • Size 188x241x48 mm
    • Weight 2209 g
    • Language English
    • Illustrations numerous line figures and tables
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    Short description:

    This second edition of the highly sucessful Fundamentals of Electrical Engineering is thoroughly expanded and updated. The text is divided into four parts: circuits, electronics, digital systems, and electromagnetics. Although it delves in depth into each of these topics, the text represents more than your basic survey of the basics of engineering, providing a solid understanding of the fundamental principles on which modern electrical engineering is based. This edition includes a chapter on circuit analysis software SPICE, with an in detail discussion of the PC version known as Spice (from MicroSim Corp.). Numerous drill exercises have been added to this new edition, reinforcing ideas presented in the examples. The text contains 1182 end-of-chapter problems -- 346 more than the first edition. The text is suitable for an introduction to electrical engineering for both majors and non-majors or both, or can be split and the various chapters utilized for an introduction to circuits course, a first electronics course, or for a course on digital electronics and logic design.

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    Long description:

    The second edition of the highly successful Fundamentals of Electrical Engineering is thoroughly expanded and updated. The text is divided into four parts: circuits, electronics, digital systems, and electromagnetics. Although it delves in depth into each of these topics, the text represents more than your basic survey of the basics of electrical engineering. A solid understanding of the fundamental principles on which modern electrical engineering is based is also provided. This edition includes a chapter on circuit analysis software SPICE, with a detailed discussion of the PC version known as PSPICE (from MicroSim Corp.). Numerous drill exercises have been added to this new edition, reinforcing ideas presented in the examples. There are over 1,000 end-of-chapter problems. This text is suitable for a variety of electrical engineering courses. It can be used as a text for an introduction to electrical engineering for both majors and non-majors or both, or can be split and the various chapters utilized for an introduction to circuits course, a first electronics course, or for a course on digital electronics and logic design.

    The second edition of this book is thoroughly expanded and updated, providing comprehensive coverage of the essential topics in the field of electronics and in some degree, electromechanics. This book is a good introduction to some aspects -low power- of electrical engineering. Furthermore, its nice lay out makes it very pleasant to use.European Power Electronics and Drives Journal

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    Table of Contents:

    Part I: Circuits
    Basic Elements and Laws
    Voltage Sources, Current Sources, and Resistors
    Kirchhoff's Current Law (KCL)
    Kirchhoff's Voltage Law (KVL)
    Independent and Dependent Souces
    Instantaneous Power
    Circuit Analysis Principles
    Nodal Analysis
    Determinants and Cramer's Rule
    Mesh Analysis
    Ideal Amplifiers
    Thevevnin's and Norton's Theorems
    Linearity and Superposition
    Time-Domain Circuit Analysis
    Inductors and Capacitors
    Integral Relationships for Inductors and Capacitors
    First-Order Circuits - The Natural Response
    First-Order Circuits - The Complete Response
    Second-Order Circuits - The Natural Response
    Second-Order Circuits - The Complete Response
    AC Analysis
    Time-Domain Analysis
    Complex Numbers
    Frequency-Domain Analysis
    Power
    Important Power Concepts
    Polyphase Circuits
    Three-Phase Loads
    Important Circuit and System Concepts
    Frequency Response
    Resonance
    Complex Frequency
    Introduction to Systems
    The Laplace Transform
    Inverse Laplace Transforms
    Application of the Laplace Transform
    Part II: Electronics
    Diodes
    Semiconductors
    Doped Semiconductors
    The Junction Diode
    The Ideal Diode
    Nonideal-Diode Models
    Zener Diodes
    Effects of Capacitance
    Bipolar Junction Transistors (BJTs)
    The pnp Transistor
    The npn Transistor
    Cutoff and Saturation
    Applications to Digitial Logic Circuits
    DTL Integrated-Circuit (IC) Logic
    Transistor-Transistor Logic (TTL)
    Other IC Logic Families
    Field-Effect Transistors (FETs)
    The Junction Field-Effect Transistor (JFET)
    Metal-Oxide-Semiconductor Field-Effect Transistors (MOSFETs)
    MOSFET Logic Gates
    Complementary MOSFETs (CMOS)
    Transistor Amplifiers
    BJT Amplifiers
    FET Amplifiers
    Frequency Response
    Power Amplifiers
    Electronic Circuits and Amplifiers
    IC Amplifiers
    Operational Amplifiers
    Feedback
    Sinusoidal Oscillators
    Comparators
    Introduction to Communication
    Part III: Digital Systems
    Digital Logic
    Binary Numbers
    Binary Arithmetic
    Digital Logic Circuits
    Boolean Algebra
    Standard Forms of Boolean Functions
    Simplification of Boolean Functions
    Logic Design
    Combinatorial Logic
    MSI and LSI Design
    Sequential Logic
    Digital Devices
    Counters
    Registers
    Memories
    Digital Information Processing
    Part IV: Electromagnetics
    Electromagnetics
    Magnetic Fields
    Magnetic Circuits
    Transformers
    The Ideal Tranformer
    Nonideal-Transformer Models
    Machines
    Tranducers
    Moving-Coil and Moving-Iron Devices
    Rotating-Coil Devices
    Generators
    Motors
    Part V: SPICE
    SPICE
    PSPICE
    Transient Analysis
    AC Analysis
    Diodes
    Dipolar Junction Transistors (BJTs)
    Field-Effect Transistors (FETs)
    Transistor Amplifiers
    Operational Amplifiers

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