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Basic Electrical and Electronics Engineering | By Vinoth & Saravanakumar & Jegathesan | 2nd Edition | Wiley Publication ( English Medium )

519-789
[Shipping Cost = Standard Mode, Expedite Mode]

Basic Electrical and Electronics Engineering | By Dr. Vinoth Kumar K, Dr. Saravanakumar R, Dr. Jegathesan V, Dr. Kowsalya M, Dr. Mahesh M | 2nd Edition | Wiley Publication ( English Medium ).


This book, Basic Electrical and Electronics Engineering, is meant for a wide range of readers who wish to learn the basic concepts. This book addresses the basic requirements of the course in B.E., B.Tech, B.Sc. Electrical and Electronics Engineering, Electronics and Communication Engineering, Electronics and Instrumentation Engineering, Mechanical Engineering, Information Science Engineering, Computer Science Engineering, Biomedical Engineering, Robotics Engineering, Aerospace Engineering, Marine Engineering, etc.The entire book is written in a style to enable the students to understand the subject matter without much difficulty.


About the Author-

Dr. Vinoth Kumar K is working as an Associate Professor in the Department of Electrical and Electronics Engineering at New Horizon College of Engineering, Bengaluru. He is having 12.8 years of teaching as well as research experience and his research area includes Condition monitoring of electrical machines, Signal and Model-Based Techniques, Soft computing techniques in Power electronics applications, Neuro-Fuzzy Computing, Computational based classification for breast cancer, Photonic Crystal Fiber.


Contents:- 


Preface


About the Authors


Chapter 1 Basics of Electrical Engineering


1.1 Electrical Quantities


1.2 Definitions About Various Quantities


1.3 SI Units


Chapter 2 DC Circuits


2.1 Introduction


2.2 Circuit Laws


2.3 Series and Parallel Circuits


2.4 Nodal and Mesh Analysis


2.5 Delta to Wye Transformation


2.6 Wye to Delta Transformation


Chapter 3 Network Theorems


3.1 Superposition Theorem


3.2 Thevenin’s Theorem


3.3 Norton’s Theorem


3.4 Maximum Power Transfer Theorem


3.5 Millman’s Theorem


3.6 Reciprocity Theorem


3.7 Substitution Theorem


3.8 Compensation Theorem


3.9 Tellegen’s Theorem


Chapter 4 DC Transients


4.1 Basics of Response


4.2 Time-Domain Analysis of R–L Circuit


4.3 Time-Domain Analysis of R–C Circuit


4.4 Time-Domain Analysis of R–L–C Circuit


Chapter 5 Magnetic Circuits


5.1 Definitions of Magnetic Quantities


5.2 Analysis of Magnetic Circuit


5.3 Magnetic Leakage


5.4 Retentivity


5.5 Magnetic Hysteresis


5.6 Magnetization Cycle


5.7 Hysteresis Loss


5.8 Steinmetz Law


5.9 Eddy Current Loss


Chapter 6 Principles of Electrical Machines


6.1 Functions of Electrical Machines


6.2 Permanent Magnet


6.3 Electromagnet


6.4 Laws of Electromagnetic Induction


6.5 Electrochemical Energy Conversion


Chapter 7 AC Circuits


7.1 Introduction


7.2 Generation of Alternating E.M.F.


7.3 Equation of Alternating Voltage


7.4 Alternating Quantity (Current or Voltage)


7.5 Cycle


7.6 Time Period (T )


7.7 Frequency (F )


7.8 Angular Frequency


7.9 Maximum or Peak Value or Amplitude


7.10 Average Value


7.11 Root Mean Square Value


7.12 Form Factor


7.13 Peak Factor


7.14 Expression for RMS Value, Average Value of Sinusoidal Alternating Quantity


7.15 Expression for RMS, Average Value of Half-Wave Rectified AC


7.16 Phase Representation of Alternating Quantity


7.17 Resonance


7.18 Series Resonance


7.19 Parallel Resonance


Chapter 8 Polyphase Systems


8.1 Two-Phase System


8.2 Three-Phase System


8.3 Three-Phase System of Connections


8.4 Phase Sequence


8.5 Balanced or Unbalanced Three-Phase System


8.6 Symmetrical or Unsymmetrical Systems


8.7 Voltages and Currents


8.8 Systems of Connections


8.9 Star- or Wye-Connected System


8.10 Delta Connected Systems


8.11 Comparison Between Star and Delta


8.12 Line Voltage Vector Diagrams with Load Current–Star/Delta


8.13 Balanced Star Load with Impedance


8.14 Balanced Delta Load with Impedance


8.15 Power Measurement in Single-Phase System


8.16 Power Measurement in Three-Phase System


8.17 Two-Wattmeter Method of Power Measurement


8.18 Two-Wattmeter Method Measurement


8.19 Unbalanced Loads in Star


8.20 Symmetrical Components


Chapter 9 Electrical Machines


9.1 Introduction


9.2 DC Machines


9.3 Transformer


9.4 Three-Phase Induction Motor


9.5 Single-Phase Induction Motor


9.6 Synchronous Motor


9.7 Autotransformer


9.8 Universal Motor


9.9 Linear Induction Motor


9.10 Stepper Motor


9.11 Servomotor


9.12 BLDC Motor


Chapter 10 Basics of Measuring Instruments


10.1 Introduction


10.2 Classification


10.3 Principle of Analog Instrument


10.4 Moving Coil Instruments


10.5 Moving Iron Instrument


10.6 Use of Voltmeters and Ammeters


10.7 Dynamometer Type Wattmeter


10.8 Induction Type Energy Meter


10.9 Megger


10.10 Measurement Errors


Chapter 11 Basics of Domestic Wiring and Batteries


11.1 Introduction


11.2 Factors Affecting Choice of Wiring System


11.3 Wiring Materials and Accessories


11.4 Types of Wiring


11.5 Rules for Wiring


11.6 Specification of Wires


11.7 Two-way and Three-way Control of Lamps


11.8 Fluorescent Tube Wiring


11.9 Simple Domestic Layout


11.10 Earthing


Chapter 12 Basics of Power Systems


12.1 Introduction


12.2 Types of Power Stations


12.3 Transmission


12.4 Distribution


Chapter 13 Basics of Electrical Components


13.1 Resistors


13.2 Fixed Resistors


13.3 Variable Resistors


13.4 Color Coding


13.5 Capacitors


13.6 Dissipation Factor


13.7 Inductors


13.8 Chokes


Chapter 14 Basics of Semiconductor Devices and Power Electronics


14.1 Classification of Materials


14.2 Properties of Semiconductors


14.3 Classification of Semiconductors


14.4 P-N Junction


14.5 P-N Junction Diode


14.6 Rectifiers


14.7 Zener Diode


14.8 Filters


14.9 Bipolar Transistor


14.10 Field Effect Transistor


14.11 Basic Concepts of Power Electronics Converters


14.12 DC–DC Converters


14.13 Voltage Source Inverter


14.14 Pulse Width Modulation


Chapter 15 Basics of Special Semiconductor Devices


15.1 Silicon Controlled Rectifiers (SCRs)


15.2 Triode for Alternating Current (TRIAC)


15.3 Unijunction Transistor (UJT)


15.4 Opto-Electronic Devices


Chapter 16 Transducers


16.1 Basic Requirements of Transducers


16.2 Classification of Transducers


16.3 Displacement Transducers


16.4 Temperature Transducers


16.5 Piezoelectric Transducers


16.6 Hall Effect Transducer


16.7 Sensor and Actuator


Chapter 17 Basics of Linear and Digital Integrated Circuits


17.1 Integrated Circuits


17.2 Linear Integrated Circuits


17.3 IC Timer


17.4 Digital Integrated Circuits


17.5 Decimal and Binary Numbers


17.6 Octal and Hexadecimal Numbers


Chapter 18 Basics of Computers


18.1 Input Devices


18.2 Central Processing Unit (CPU)


18.3 Output Devices


18.4 Memory Devices


18.5 Memory Terminology


18.6 Mass Storage Data System


18.7 Computer Input Units


18.9 Plotters


18.10 Computer Output on Microfilm


18.11 Digital to Analog Converter


18.12 Classification of Computers


18.13 Microprocessors


Chapter 19 Basics of Communication


19.1 Analog and Digital Signal


19.2 Data Transmission


19.3 Modulation


19.4 Demodulation


19.5 Pulse Modulation


19.6 Digital Data Transmission


19.7 Data Communication System


19.8 MODEMS


19.9 Communication System


19.10 Computer Network


19.11 Integrated Services Digital Network (ISDN)


19.12 Internet


Summary


Multiple Choice Questions


Review Questions


Answers


Index.


Search Key:- Publisher ‏ : ‎ Wiley publication, Language ‏ : ‎ English, ISBN-10 ‏ : ‎ 9354643191, ISBN-13 ‏ : ‎ 978-9354643194, Reading age ‏ : ‎ 18 years and up, Item Weight ‏ : ‎ 600 g, Dimensions ‏ : ‎ 20.3 x 25.4 x 4.7 cm, Country of Origin ‏ : ‎ India, Net Quantity ‏ : ‎ 600 Grams, Basic Electrical and Electronics Engineering book, Basic Electrical and Electronics Engineering 2nd edition, Basic Electrical and Electronics Engineering Wiley, Basic Electrical and Electronics Engineering by Vinoth Kumar, Basic Electrical and Electronics Engineering by Saravanakumar, Basic Electrical and Electronics Engineering by Kowsalya, Basic Electrical and Electronics Engineering Wiley publication, Basic Electrical and Electronics Engineering latest edition, Basic Electrical and Electronics Engineering English medium, Wiley publication Basic Electrical book, Basic Electrical and Electronics Engineering Vinoth Kumar Wiley, Basic Electrical and Electronics Engineering 2nd edition, Best Electrical and Electronics Engineering books, Basic Electrical Engineering for beginners, Basic Electronics Engineering for beginners, Electrical Engineering book by Wiley, Electronics Engineering book by Wiley, Basic Electrical and Electronics book for engineering students, Wiley Basic Electrical and Electronics Engineering 2nd edition, Basic Electrical Engineering book with solved problems.


Product Details
SKU / BOOK Code: Wiley-bas-ele-&-elect-engineering(E)
Publisher: Wiley Publication
Author:
Binding Type: Paperback
No. of Pages: As Per Publisher
ISBN-10: 9354643191
ISBN-13: 978-9354643194
Edition: 2nd Edition
Language: English Medium
Publish Year: 2022-06
Weight (g): 600
Product Condition: New
Reading Age: Above 10 Years
Country of Origin: India
Genre: Book
Manufacturer: As Per Publisher
Importer: Not Applicable
Packer: Fulfilled by The Supplier
Product Description

Basic Electrical and Electronics Engineering | By Dr. Vinoth Kumar K, Dr. Saravanakumar R, Dr. Jegathesan V, Dr. Kowsalya M, Dr. Mahesh M | 2nd Edition | Wiley Publication ( English Medium ).


This book, Basic Electrical and Electronics Engineering, is meant for a wide range of readers who wish to learn the basic concepts. This book addresses the basic requirements of the course in B.E., B.Tech, B.Sc. Electrical and Electronics Engineering, Electronics and Communication Engineering, Electronics and Instrumentation Engineering, Mechanical Engineering, Information Science Engineering, Computer Science Engineering, Biomedical Engineering, Robotics Engineering, Aerospace Engineering, Marine Engineering, etc.The entire book is written in a style to enable the students to understand the subject matter without much difficulty.


About the Author-

Dr. Vinoth Kumar K is working as an Associate Professor in the Department of Electrical and Electronics Engineering at New Horizon College of Engineering, Bengaluru. He is having 12.8 years of teaching as well as research experience and his research area includes Condition monitoring of electrical machines, Signal and Model-Based Techniques, Soft computing techniques in Power electronics applications, Neuro-Fuzzy Computing, Computational based classification for breast cancer, Photonic Crystal Fiber.


Contents:- 


Preface


About the Authors


Chapter 1 Basics of Electrical Engineering


1.1 Electrical Quantities


1.2 Definitions About Various Quantities


1.3 SI Units


Chapter 2 DC Circuits


2.1 Introduction


2.2 Circuit Laws


2.3 Series and Parallel Circuits


2.4 Nodal and Mesh Analysis


2.5 Delta to Wye Transformation


2.6 Wye to Delta Transformation


Chapter 3 Network Theorems


3.1 Superposition Theorem


3.2 Thevenin’s Theorem


3.3 Norton’s Theorem


3.4 Maximum Power Transfer Theorem


3.5 Millman’s Theorem


3.6 Reciprocity Theorem


3.7 Substitution Theorem


3.8 Compensation Theorem


3.9 Tellegen’s Theorem


Chapter 4 DC Transients


4.1 Basics of Response


4.2 Time-Domain Analysis of R–L Circuit


4.3 Time-Domain Analysis of R–C Circuit


4.4 Time-Domain Analysis of R–L–C Circuit


Chapter 5 Magnetic Circuits


5.1 Definitions of Magnetic Quantities


5.2 Analysis of Magnetic Circuit


5.3 Magnetic Leakage


5.4 Retentivity


5.5 Magnetic Hysteresis


5.6 Magnetization Cycle


5.7 Hysteresis Loss


5.8 Steinmetz Law


5.9 Eddy Current Loss


Chapter 6 Principles of Electrical Machines


6.1 Functions of Electrical Machines


6.2 Permanent Magnet


6.3 Electromagnet


6.4 Laws of Electromagnetic Induction


6.5 Electrochemical Energy Conversion


Chapter 7 AC Circuits


7.1 Introduction


7.2 Generation of Alternating E.M.F.


7.3 Equation of Alternating Voltage


7.4 Alternating Quantity (Current or Voltage)


7.5 Cycle


7.6 Time Period (T )


7.7 Frequency (F )


7.8 Angular Frequency


7.9 Maximum or Peak Value or Amplitude


7.10 Average Value


7.11 Root Mean Square Value


7.12 Form Factor


7.13 Peak Factor


7.14 Expression for RMS Value, Average Value of Sinusoidal Alternating Quantity


7.15 Expression for RMS, Average Value of Half-Wave Rectified AC


7.16 Phase Representation of Alternating Quantity


7.17 Resonance


7.18 Series Resonance


7.19 Parallel Resonance


Chapter 8 Polyphase Systems


8.1 Two-Phase System


8.2 Three-Phase System


8.3 Three-Phase System of Connections


8.4 Phase Sequence


8.5 Balanced or Unbalanced Three-Phase System


8.6 Symmetrical or Unsymmetrical Systems


8.7 Voltages and Currents


8.8 Systems of Connections


8.9 Star- or Wye-Connected System


8.10 Delta Connected Systems


8.11 Comparison Between Star and Delta


8.12 Line Voltage Vector Diagrams with Load Current–Star/Delta


8.13 Balanced Star Load with Impedance


8.14 Balanced Delta Load with Impedance


8.15 Power Measurement in Single-Phase System


8.16 Power Measurement in Three-Phase System


8.17 Two-Wattmeter Method of Power Measurement


8.18 Two-Wattmeter Method Measurement


8.19 Unbalanced Loads in Star


8.20 Symmetrical Components


Chapter 9 Electrical Machines


9.1 Introduction


9.2 DC Machines


9.3 Transformer


9.4 Three-Phase Induction Motor


9.5 Single-Phase Induction Motor


9.6 Synchronous Motor


9.7 Autotransformer


9.8 Universal Motor


9.9 Linear Induction Motor


9.10 Stepper Motor


9.11 Servomotor


9.12 BLDC Motor


Chapter 10 Basics of Measuring Instruments


10.1 Introduction


10.2 Classification


10.3 Principle of Analog Instrument


10.4 Moving Coil Instruments


10.5 Moving Iron Instrument


10.6 Use of Voltmeters and Ammeters


10.7 Dynamometer Type Wattmeter


10.8 Induction Type Energy Meter


10.9 Megger


10.10 Measurement Errors


Chapter 11 Basics of Domestic Wiring and Batteries


11.1 Introduction


11.2 Factors Affecting Choice of Wiring System


11.3 Wiring Materials and Accessories


11.4 Types of Wiring


11.5 Rules for Wiring


11.6 Specification of Wires


11.7 Two-way and Three-way Control of Lamps


11.8 Fluorescent Tube Wiring


11.9 Simple Domestic Layout


11.10 Earthing


Chapter 12 Basics of Power Systems


12.1 Introduction


12.2 Types of Power Stations


12.3 Transmission


12.4 Distribution


Chapter 13 Basics of Electrical Components


13.1 Resistors


13.2 Fixed Resistors


13.3 Variable Resistors


13.4 Color Coding


13.5 Capacitors


13.6 Dissipation Factor


13.7 Inductors


13.8 Chokes


Chapter 14 Basics of Semiconductor Devices and Power Electronics


14.1 Classification of Materials


14.2 Properties of Semiconductors


14.3 Classification of Semiconductors


14.4 P-N Junction


14.5 P-N Junction Diode


14.6 Rectifiers


14.7 Zener Diode


14.8 Filters


14.9 Bipolar Transistor


14.10 Field Effect Transistor


14.11 Basic Concepts of Power Electronics Converters


14.12 DC–DC Converters


14.13 Voltage Source Inverter


14.14 Pulse Width Modulation


Chapter 15 Basics of Special Semiconductor Devices


15.1 Silicon Controlled Rectifiers (SCRs)


15.2 Triode for Alternating Current (TRIAC)


15.3 Unijunction Transistor (UJT)


15.4 Opto-Electronic Devices


Chapter 16 Transducers


16.1 Basic Requirements of Transducers


16.2 Classification of Transducers


16.3 Displacement Transducers


16.4 Temperature Transducers


16.5 Piezoelectric Transducers


16.6 Hall Effect Transducer


16.7 Sensor and Actuator


Chapter 17 Basics of Linear and Digital Integrated Circuits


17.1 Integrated Circuits


17.2 Linear Integrated Circuits


17.3 IC Timer


17.4 Digital Integrated Circuits


17.5 Decimal and Binary Numbers


17.6 Octal and Hexadecimal Numbers


Chapter 18 Basics of Computers


18.1 Input Devices


18.2 Central Processing Unit (CPU)


18.3 Output Devices


18.4 Memory Devices


18.5 Memory Terminology


18.6 Mass Storage Data System


18.7 Computer Input Units


18.9 Plotters


18.10 Computer Output on Microfilm


18.11 Digital to Analog Converter


18.12 Classification of Computers


18.13 Microprocessors


Chapter 19 Basics of Communication


19.1 Analog and Digital Signal


19.2 Data Transmission


19.3 Modulation


19.4 Demodulation


19.5 Pulse Modulation


19.6 Digital Data Transmission


19.7 Data Communication System


19.8 MODEMS


19.9 Communication System


19.10 Computer Network


19.11 Integrated Services Digital Network (ISDN)


19.12 Internet


Summary


Multiple Choice Questions


Review Questions


Answers


Index.


Search Key:- Publisher ‏ : ‎ Wiley publication, Language ‏ : ‎ English, ISBN-10 ‏ : ‎ 9354643191, ISBN-13 ‏ : ‎ 978-9354643194, Reading age ‏ : ‎ 18 years and up, Item Weight ‏ : ‎ 600 g, Dimensions ‏ : ‎ 20.3 x 25.4 x 4.7 cm, Country of Origin ‏ : ‎ India, Net Quantity ‏ : ‎ 600 Grams, Basic Electrical and Electronics Engineering book, Basic Electrical and Electronics Engineering 2nd edition, Basic Electrical and Electronics Engineering Wiley, Basic Electrical and Electronics Engineering by Vinoth Kumar, Basic Electrical and Electronics Engineering by Saravanakumar, Basic Electrical and Electronics Engineering by Kowsalya, Basic Electrical and Electronics Engineering Wiley publication, Basic Electrical and Electronics Engineering latest edition, Basic Electrical and Electronics Engineering English medium, Wiley publication Basic Electrical book, Basic Electrical and Electronics Engineering Vinoth Kumar Wiley, Basic Electrical and Electronics Engineering 2nd edition, Best Electrical and Electronics Engineering books, Basic Electrical Engineering for beginners, Basic Electronics Engineering for beginners, Electrical Engineering book by Wiley, Electronics Engineering book by Wiley, Basic Electrical and Electronics book for engineering students, Wiley Basic Electrical and Electronics Engineering 2nd edition, Basic Electrical Engineering book with solved problems.

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