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Showing posts with label 4th Semester Telecom Engg. Show all posts
Showing posts with label 4th Semester Telecom Engg. Show all posts

December 10, 2014

Signals and Systems by Oppenheim 2nd Edition - Text Book

Signals and Systems  by Oppenheim
Signals and Systems
by Oppenheim
Book Name: Signals & Systems
Author Name:
Alan V. Oppenheim
Alan S. Willsky
Edition: Second Edition, (August 16, 1996)
Publisher: Prentice Hall
Pages: 985 pages
Size: 14.2 MB
ISBN-10: 0138147574
ISBN-13: 978-0138147570
Type: Text Book

Download Text Book here.
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Its in PDF format if you don't have Adobe Reader then please 1st download it.
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Details:
The second edition of this well-known and highly regarded text can be used as the basis for a one- or two-semester undergraduate course in signals and linear systems theory and applications. Topics include basic signals and systems concepts, linear time-invariant (LTI) systems, Fourier representations of continuous-time and discrete-time signals, the CT and DT Fourier transforms, and time- and frequency-domain analysis methods. The author emphasizes applications of the theory through numerous examples in filtering, sampling, communications, and feedback. The parallel development of continuous-time and discrete-time frequency domain methods allows the reader to apply insights and intuition across the two domains. It also facilitates a deeper understanding of the material by bringing into focus the similarities and differences between the two domains. The text also includes introductory chapters on communication systems and control theory. This book assumes that you have a background in calculus as well as exposure to complex numbers and elementary differential equations. Because of its thoroughness and unhurried pace, this text is highly recommended for students and those interested in self-study. 

Product Description
This comprehensive book of signals and systems develops continuous-time and discrete-time concepts/methods. Highly regarded for its intellectual quality, it provides a solid foundation and life-long reference for anyone studying the most important methods or modern signal and system analysis.

Table of Contents
(NOTE: Each chapter begins with an Introduction and concludes with a Summary.)

1. Signals and Systems. 
Continuous-Time and Discrete-Time Signals. Transformations of the Independent Variable. Exponential and Sinusoidal Signals. The Unit Impulse and Unit Step Functions. Continuous-Time and Discrete-Time Systems. Basic System Properties.

2. Linear Time-Invariant Systems. 
Discrete-Time LTI Systems: The Convolution Sum. Continuous-Time LTI Systems: The Convolution Integral. Properties of Linear Time-Invariant Systems. Causal LTI Systems Described by Differential and Difference Equations. Singularity Functions.

3. Fourier Series Representation of Periodic Signals. 
A Historical Perspective. The Response of LTI Systems to Complex Exponentials. Fourier Series Representation of Continuous-Time Periodic Signals. Convergence of the Fourier Series. Properties of Continuous-Time Fourier Series. Fourier Series Representation of Discrete-Time Periodic Signals. Properties of Discrete-Time Fourier Series. Fourier Series and LTI Systems. Filtering. Examples of Continuous-Time Filters Described by Differential Equations. Examples of Discrete-Time Filters Described by Difference Equations.

4. The Continuous-Time Fourier Transform. 
Representation of Aperiodic Signals: The Continuous-Time Fourier Transform. The Fourier Transform for Periodic Signals. Properties of the Continuous-Time Fourier Transform. The Convolution Property. The Multiplication Property. Tables of Fourier Properties and Basic Fourier Transform Pairs. Systems Characterized by Linear Constant-Coefficient Differential Equations.

5. The Discrete-Time Fourier Transform. 
Representation of Aperiodic Signals: The Discrete-Time Fourier Transform. The Fourier Transform for Periodic Signals. Properties of the Discrete-Time Fourier Transform. The Convolution Property. The Multiplication Property. Tables of Fourier Transform Properties and Basic Fourier Transform Pairs. Duality. Systems Characterized by Linear Constant-Coefficient Difference Equations.

6. Time- and Frequency Characterization of Signals and Systems. 
The Magnitude-Phase Representation of the Fourier Transform. The Magnitude-Phase Representation of the Frequency Response of LTI Systems. Time-Domain Properties of Ideal Frequency-Selective Filters. Time- Domain and Frequency-Domain Aspects of Nonideal Filters. First-Order and Second-Order Continuous-Time Systems. First-Order and Second-Order Discrete-Time Systems. Examples of Time- and Frequency-Domain Analysis of Systems.

7. Sampling. 
Representation of a Continuous-Time Signal by Its Samples: The Sampling Theorem. Reconstruction of a Signal from Its Samples Using Interpolation. The Effect of Under sampling: Aliasing. Discrete-Time Processing of Continuous-Time Signals. Sampling of Discrete-Time Signals.

8. Communication Systems. 
Complex Exponential and Sinusoidal Amplitude Modulation. Demodulation for Sinusoidal AM. Frequency-Division Multiplexing. Single-Sideband Sinusoidal Amplitude Modulation. Amplitude Modulation with a Pulse-Train Carrier. Pulse-Amplitude Modulation. Sinusoidal Frequency Modulation. Discrete-Time Modulation.

9. The Laplace Transform. 
The Laplace Transform. The Region of Convergence for Laplace Transforms. The Inverse Laplace Transform. Geometric Evaluation of the Fourier Transform from the Pole-Zero Plot. Properties of the Laplace Transform. Some Laplace Transform Pairs. Analysis and Characterization of LTI Systems Using the Laplace Transform. System Function Algebra and Block Diagram Representations. The Unilateral Laplace Transform.

10. The Z-Transform. 
The z-Transform. The Region of Convergence for the z-Transform. The Inverse z-Transform. Geometric Evaluation of the Fourier Transform from the Pole-Zero Plot. Properties of the z-Transform. Some Common z-Transform Pairs. Analysis and Characterization of LTI Systems Using z-Transforms. System Function Algebra and Block Diagram Representations. The Unilateral z-Transforms.

11. Linear Feedback Systems. 
Linear Feedback Systems. Some Applications and Consequences of Feedback. Root-Locus Analysis of Linear Feedback Systems. The Nyquist Stability Criterion. Gain and Phase Margins.

Appendix: Partial-Fraction Expansion. 
Bibliography. 
Answers. 
Index. 

November 27, 2014

Solution Manual of Engineering Electromagnetics by Hayt and Buck

Engineering Electromegnatics
Engineering Electromegnatics
Book Name: Engineering Electromagnetics
Author Name:
William H. Hayt Jr.
John A. Buck
Edition: 7th Edition
Type: Solution Manual

Download Solution Manual here.
Download

Its in PDF format if you don't have Adobe Reader then please 1st download it.
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Engineering Electromagnetics is a "classic" book that has been updated for electromagnetics in today's world. It is designed for introductory courses in electromagnetics or electromagnetic field theory at the junior-level, but can also be used as a professional reference. This widely respected book stresses fundamentals and problem solving and discusses the material in an understandable, readable way. Numerous illustrations and analogies are provided to the aid the reader in grasping difficult concepts. In addition, independent learning is facilitated by the presence of many examples and problems.
This site contains helpful resources for instructors and students. If you click on the Information Center link on the left, you will find the following: About the Authors, Book Preface, Book Walkthrough, Table of Contents, and PageOut (a useful tool creating an instructor's website).

November 12, 2014

Engineering Electromagnetics by William Hayt and Buck 6th Edition

Engineering Electromagnetics
Engineering Electromagnetics
Book Name: Engineering Electromagnetics
Author Name:
William H. Hayt Jr.
John A. Buck
Edition: 6th Edition
Type: Ebook

Download Ebook here.
Download 

Its in PDF format if you don't have Adobe Reader then please 1st download it.

Details:
Engineering Electromagnetics is a "classic" book that has been updated for electromagnetics in today's world. It is designed for introductory courses in electromagnetics or electromagnetic field theory at the junior-level, but can also be used as a professional reference. This widely respected book stresses fundamentals and problem solving and discusses the material in an understandable, readable way. Numerous illustrations and analogies are provided to the aid the reader in grasping difficult concepts. In addition, independent learning is facilitated by the presence of many examples and problems.
This site contains helpful resources for instructors and students. If you click on the Information Center link on the left, you will find the following: About the Authors, Book Preface, Book Walkthrough, Table of Contents, and PageOut (a useful tool creating an instructor's website).

Engineering Electromagnetics by Hayt and Buck 8th Edition

Engineering Electromegnatics
Engineering Electromegnatics
Book Name: Engineering Electromagnetics
Author Name:
William H. Hayt Jr.
John A. Buck
Edition: 8th Edition
Type: Ebook

Download Ebook here.
Download 

Its in PDF format if you don't have Adobe Reader then please 1st download it.
Download Adobe Reader

Details:
Engineering Electromagnetics is a "classic" book that has been updated for electromagnetics in today's world. It is designed for introductory courses in electromagnetics or electromagnetic field theory at the junior-level, but can also be used as a professional reference. This widely respected book stresses fundamentals and problem solving and discusses the material in an understandable, readable way. Numerous illustrations and analogies are provided to the aid the reader in grasping difficult concepts. In addition, independent learning is facilitated by the presence of many examples and problems.
This site contains helpful resources for instructors and students. If you click on the Information Center link on the left, you will find the following: About the Authors, Book Preface, Book Walkthrough, Table of Contents, and PageOut (a useful tool creating an instructor's website).

October 8, 2014

Solution Manual of Signals and Systems by Oppenheim 2nd Edition

Signals and Systems by Oppenheim
Signals and Systems
by Oppenheim
Book Name: Signals & Systems
Author Name:
Alan V. Oppenheim
Alan S. Willsky
Edition: Second Edition, (August 16, 1996)
Publisher: Prentice Hall
Pages: 116 pages
Size: 22.4 MB
ISBN-10: 0138147574
ISBN-13: 978-0138147570
Type: Soltuon Manual

Download Soltuon Manual here.
Download 

Its in PDF format if you don't have Adobe Reader then please 1st download it.
Download Adobe Reader 
Give A Comment
The second edition of this well-known and highly regarded text can be used as the basis for a one- or two-semester undergraduate course in signals and linear systems theory and applications. Topics include basic signals and systems concepts, linear time-invariant (LTI) systems, Fourier representations of continuous-time and discrete-time signals, the CT and DT Fourier transforms, and time- and frequency-domain analysis methods. The author emphasizes applications of the theory through numerous examples in filtering, sampling, communications, and feedback. The parallel development of continuous-time and discrete-time frequency domain methods allows the reader to apply insights and intuition across the two domains. It also facilitates a deeper understanding of the material by bringing into focus the similarities and differences between the two domains. The text also includes introductory chapters on communication systems and control theory. This book assumes that you have a background in calculus as well as exposure to complex numbers and elementary differential equations. Because of its thoroughness and unhurried pace, this text is highly recommended for students and those interested in self-study. 

Product Description
This comprehensive book of signals and systems develops continuous-time and discrete-time concepts/methods. Highly regarded for its intellectual quality, it provides a solid foundation and life-long reference for anyone studying the most important methods or modern signal and system analysis.

Table of Contents
(NOTE: Each chapter begins with an Introduction and concludes with a Summary.)

1. Signals and Systems. 
Continuous-Time and Discrete-Time Signals. Transformations of the Independent Variable. Exponential and Sinusoidal Signals. The Unit Impulse and Unit Step Functions. Continuous-Time and Discrete-Time Systems. Basic System Properties.

2. Linear Time-Invariant Systems. 
Discrete-Time LTI Systems: The Convolution Sum. Continuous-Time LTI Systems: The Convolution Integral. Properties of Linear Time-Invariant Systems. Causal LTI Systems Described by Differential and Difference Equations. Singularity Functions.

3. Fourier Series Representation of Periodic Signals. 
A Historical Perspective. The Response of LTI Systems to Complex Exponentials. Fourier Series Representation of Continuous-Time Periodic Signals. Convergence of the Fourier Series. Properties of Continuous-Time Fourier Series. Fourier Series Representation of Discrete-Time Periodic Signals. Properties of Discrete-Time Fourier Series. Fourier Series and LTI Systems. Filtering. Examples of Continuous-Time Filters Described by Differential Equations. Examples of Discrete-Time Filters Described by Difference Equations.

4. The Continuous-Time Fourier Transform. 
Representation of Aperiodic Signals: The Continuous-Time Fourier Transform. The Fourier Transform for Periodic Signals. Properties of the Continuous-Time Fourier Transform. The Convolution Property. The Multiplication Property. Tables of Fourier Properties and Basic Fourier Transform Pairs. Systems Characterized by Linear Constant-Coefficient Differential Equations.

5. The Discrete-Time Fourier Transform. 
Representation of Aperiodic Signals: The Discrete-Time Fourier Transform. The Fourier Transform for Periodic Signals. Properties of the Discrete-Time Fourier Transform. The Convolution Property. The Multiplication Property. Tables of Fourier Transform Properties and Basic Fourier Transform Pairs. Duality. Systems Characterized by Linear Constant-Coefficient Difference Equations.

6. Time- and Frequency Characterization of Signals and Systems. 
The Magnitude-Phase Representation of the Fourier Transform. The Magnitude-Phase Representation of the Frequency Response of LTI Systems. Time-Domain Properties of Ideal Frequency-Selective Filters. Time- Domain and Frequency-Domain Aspects of Nonideal Filters. First-Order and Second-Order Continuous-Time Systems. First-Order and Second-Order Discrete-Time Systems. Examples of Time- and Frequency-Domain Analysis of Systems.

7. Sampling. 
Representation of a Continuous-Time Signal by Its Samples: The Sampling Theorem. Reconstruction of a Signal from Its Samples Using Interpolation. The Effect of Under sampling: Aliasing. Discrete-Time Processing of Continuous-Time Signals. Sampling of Discrete-Time Signals.

8. Communication Systems. 
Complex Exponential and Sinusoidal Amplitude Modulation. Demodulation for Sinusoidal AM. Frequency-Division Multiplexing. Single-Sideband Sinusoidal Amplitude Modulation. Amplitude Modulation with a Pulse-Train Carrier. Pulse-Amplitude Modulation. Sinusoidal Frequency Modulation. Discrete-Time Modulation.

9. The Laplace Transform. 
The Laplace Transform. The Region of Convergence for Laplace Transforms. The Inverse Laplace Transform. Geometric Evaluation of the Fourier Transform from the Pole-Zero Plot. Properties of the Laplace Transform. Some Laplace Transform Pairs. Analysis and Characterization of LTI Systems Using the Laplace Transform. System Function Algebra and Block Diagram Representations. The Unilateral Laplace Transform.

10. The Z-Transform. 
The z-Transform. The Region of Convergence for the z-Transform. The Inverse z-Transform. Geometric Evaluation of the Fourier Transform from the Pole-Zero Plot. Properties of the z-Transform. Some Common z-Transform Pairs. Analysis and Characterization of LTI Systems Using z-Transforms. System Function Algebra and Block Diagram Representations. The Unilateral z-Transforms.

11. Linear Feedback Systems. 
Linear Feedback Systems. Some Applications and Consequences of Feedback. Root-Locus Analysis of Linear Feedback Systems. The Nyquist Stability Criterion. Gain and Phase Margins.

Appendix: Partial-Fraction Expansion. 
Bibliography. 
Answers. 
Index. 

October 6, 2014

Engineering Electromagnetics by Hayt and Buck 7th Edition

Engineering Electromagnetics
Engineering Electromagnetics
Book Name: Engineering Electromagnetics
Author Name:
William H. Hayt Jr.
John A. Buck
Edition: 7th Edition
Type: Ebook

Download Ebook here.
Download 

Its in PDF format if you don't have Adobe Reader then please 1st download it.
Download Adobe Reader

Download 8th edition of Engineering Electromagnetics
http://ieee-books.blogspot.com/2012/11/engineering-electromagnetics-by-hayt.html

Details:
Engineering Electromagnetics is a "classic" book that has been updated for electromagnetics in today's world. It is designed for introductory courses in electromagnetics or electromagnetic field theory at the junior-level, but can also be used as a professional reference. This widely respected book stresses fundamentals and problem solving and discusses the material in an understandable, readable way. Numerous illustrations and analogies are provided to the aid the reader in grasping difficult concepts. In addition, independent learning is facilitated by the presence of many examples and problems.
This site contains helpful resources for instructors and students. If you click on the Information Center link on the left, you will find the following: About the Authors, Book Preface, Book Walkthrough, Table of Contents, and PageOut (a useful tool creating an instructor's website).

February 12, 2014

Solution Manual for Probability Statistics and Random Processes for Electrical Engineering by Alberto Leon-Garcia

Solution Manual for Probability
Statistics and Random
Processes for Electrical
Engineering
Book Name: Probability Statistics and Random Processes for Electrical Engineering
Author Name: Alberto Leon-Garcia
Edition: 4th Edition
Type: Solution Manual
Pages: 42 Parts
Size: 8.32 MB (.rar File)

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About Author:
This is the standard textbook for courses on probability and statistics, not substantially updated. While helping students to develop their problem-solving skills, the author motivates students with practical applications from various areas of ECE that demonstrate the relevance of probability theory to engineering practice. Included are chapter overviews, summaries, checklists of important terms, annotated references, and a wide selection of fully worked-out real-world examples. In this edition, the Computer Methods sections have been updated and substantially enhanced and new problems have been added.

January 15, 2014

Engineering Electromagnetics by Hayt and Buck 7th Edition Ebook

Engineering Electromagnetics
Engineering Electromagnetics
Book Name: Engineering Electromagnetics
Author Name:
William H. Hayt Jr.
John A. Buck
Edition: 7th Edition
Type: Ebook

Download Ebook here.
Download 

Its in PDF format if you don't have Adobe Reader then please 1st download it.
Download Adobe Reader

Download 8th edition of Engineering Electromagnetics
http://ieee-books.blogspot.com/2012/11/engineering-electromagnetics-by-hayt.html

Details:
Engineering Electromagnetics is a "classic" book that has been updated for electromagnetics in today's world. It is designed for introductory courses in electromagnetics or electromagnetic field theory at the junior-level, but can also be used as a professional reference. This widely respected book stresses fundamentals and problem solving and discusses the material in an understandable, readable way. Numerous illustrations and analogies are provided to the aid the reader in grasping difficult concepts. In addition, independent learning is facilitated by the presence of many examples and problems.
This site contains helpful resources for instructors and students. If you click on the Information Center link on the left, you will find the following: About the Authors, Book Preface, Book Walkthrough, Table of Contents, and PageOut (a useful tool creating an instructor's website).

April 7, 2013

Probability and Statistics for Engineers and Scientists by Sharon Myers 9th Edition


Book Name: Probability & Statistics for Engineers & Scientists
Author Name:
Keying Ye
Sharon Myers
Edition: 9th Edition
Type: Text Book

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Its in PDF format if you don't have Adobe Reader then please 1st download it.
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Solution Manual of Probability and Statistics for Engineers and Scientists by Sharon Myers 8th Edition

March 6, 2012

Power Electronics by Muhammad H Rashid 3rd Edition

Power Electronics
Power Electronics
Book Name: Power Electronics Handbook
Author Name: Muhammad H. Rashid
Edition: Third Edition
Year: 2001
Pages: 892
Type: Ebook

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Its in PDF format if you don't have Adobe Reader then please 1st download it.
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Details:
Power electronics is a broad subject that deals with every aspect of electronic systems and devices. Any computer, machine, controller, game, etc., that is available today is dependent on the power electronics in those systems and devices to operate. Power electronics systems deal with the process of converting electrical power from one form to another. Power Electronics Handbook is specifically designed for the professional engineer in industry and includes contributions of over 60 authors primarily from industry.

Power electronics is most frequently thought of because of its importance in supplying and converting an uninterruptable power supply to computers. The growth in computational power, communications applications, data storage, and memory systems has put the common layperson directly in contact with power engineering devices and challenges such as surge protectors and power failures. However, the field of power electronics is involved in all electronic devices and sytems. Examples include residential (refrigeration, heating, cooking, audio/video), commercial (lighting, office equipment, elevators), industrial (pumps, compressors, fans, robots, lasers, welding), transportation (automotive electronics, electric trains, battery chargers), and telecommunications (battery chargers, power supplies). 
All engineers involved with system and device design must deal with the fundamentals and advances of power electronics. This Handbook is the result of an intensive search to develop a new major reference for this large professional market. All aspects of AC and DC power conversion are addressed and there is an emphasis on the design process throughout as well as safety and reliability. This is the most comprehensive treatment of all aspects of power electronics ever presented in one volume at such a reasonable price.

The book has 35 chapters covering all aspects of power electronics and its applications. 
authors from 12 different countries contributed to the handbook. They are the leading researchers in the particular topic area of power electronics and are well known for their expertise 
The book includes 8 chapters on the modern power semiconductor devices such as MCTs, IGBTs, SIDs, power MOSFETs and BJTs. 
The book includes 10 chapters covering various types of power converters and the principles of operation and the methods for the analysis and design of power converters. 
The book includes 11 chapters covering applications such as power supplies, electronics ballast, HVDC transmission, VAR compensation, motor drives, automotive systems and capacitor charging. 
The book includes 4 chapters covering power quality issues, active filters, simulation and packaging of smart power systems.
For More Info: http://books.google.com.pk/books/about/Power_Electronics_Handbook.html?id=072rwRgFpcgC&redir_esc=y

September 21, 2011

Solution Manual of Probability and Statistics for Engineers and Scientists by Sharon Myers 8th Edition

Book Name: Probability & Statistics for Engineers & Scientists
Author Name:
Keying Ye
Sharon Myers
Edition: 8th Edition
Type: Solution Manual

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Probability and Statistics for Engineers and Scientists by Sharon Myers 9th Edition

Probability and Random Variables - Lectures

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