Differential Equations  by H.T.H. Piaggio 

                                

Differential Equations

        

An approach to making and soving Differntial Equations. Useful for engineering students.


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Thermodynamics  by Cengel Boles
                                                      by Yunus A. Cengel (Author), Michael A. Boles (Author)


thermodynamics



Thermodynamics: An Engineering Approach brings further refinement to an approach that emphasizes a physical understanding of the fundamental concepts of thermodynamics. The authors offer an engineering textbook that "talks directly to tomorrow's engineers in a simple yet precise manner, that encourages creative thinking, and is read by the students with interest and enthusiasm." 
The new edition features an early introduction of the first law of thermodynamics, separate coverage of closed systems energy analysis, combined coverage of control volume mass and energy analysis, and revised coverage of compressible flow. Over 300 comprehensive problems have been added to this physically intuitive text, many of which come from industrial applications. 
An Online Learning Center is available to students and instructors at http://www.mhhe.com/cengel. Instructors also have access to an Instructor Resource CD-ROM that provides useful tools in order to optimize in-class presentations.


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Thermodynamics

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Fundamentals Electric Circuits - (Charles Alexander)

                                                                by Charles K. Alexander (Author), Matthew N.O. Sadiku (Author)
 

Fundamental of Electric Circuits



    Alexander and Sadiku's fifth edition of Fundamentals of Electric Circuits continues in the spirit of its successful previous editions, with the objective of presenting circuit analysis in a manner that is clearer, more interesting, and easier to understand than other, more traditional texts. Students are introduced to the sound, six step problem solving methodology in chapter one and are consistently made to apply and practice these steps in practice problems and homework problems throughout the text.
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    Table of Contents
    Part 1 DC Circuits
    Chapter 1 Basic Concepts
    Chapter 2 Basic Laws
    Chapter 3 Methods of Analysis
    Chapter 4 Circuit Theorems
    Chapter 5 Operational Amplifiers
    Chapter 6 Capacitors and Inductors
    Chapter 7 First Order Circuits
    Chapter 8 Second Order Circuits
    Part 2 AC Circuits
    Chapter 9 Sinusoids and Phasors
    Chapter 10 Sinusoidal Steady-State Analysis
    Chapter 11 AC Power Analysis
    Chapter 12 Three Phase Circuits
    Chapter 13 Magnetically Coupled Circuits
    Chapter 14 Frequency Response
    Part 3 Advanced Circuit Analysis
    Chapter 15 Introduction to the Laplace Transform
    Chapter 16 Applications of the Laplace Transform
    Chapter 17 The Fourier Series
    Chapter 18 Fourier Transform
    Chapter 19 Two Port Networks
    • Appendix A: Simultaneous Equations and Matrix Inversion
    • Appendix B: Complex Numbers
    • Appendix C: Mathematical Formulas
    • Appendix D: Answers to Odd-Numbered Problems


Fundamentals_Of_Electric_Circuits-5th-Edition.pdf

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Differential Calculas by Shanti Narayan

Differential Calculus 

Description


This book has been designed to meet the requirements of undergraduate students of BA and BSc courses. it commences with a brief outline of development of real numbers, their expression as infinte decimals and their representation by points along a line. While the first part of the book is analytical, the latter part deals with the geometrical applications of the subject. Numerous examples and exercises have been provided to support student's understanding. 
  1. Analytical geometrical interpretation of results has been provided
  2. Principles and methods profusely illustrated with the help of numerous solved examples
  3. A Chapter on Some Important Curves which acquaints the students with different kinds of curves helping them understand their properties 

Chapter-1: Real Numbers
Chapter-2: Functions and Graphs – Elementary Functions
Chapter-3: Continuity and Limit
Chapter-4: Differentiation
Chapter-5: Successive Differentiation
Chapter-6: Expansion of Functions
Chapter-7: Tangents and Normals
Chapter-8: Mean Value Theorems
Chapter-9: Maxima and Minima
Chapter-10: Indeterminate Forms
Chapter-11: Partial Differentiation
Chapter-12: Jacobians
Chapter-13: Concavity and Points of Inflexion
Chapter-14: Curvature and Evolutes
Chapter-15: Asymptoes
Chapter-16: Singular Points
Chapter-17: Curve Tracing
Chapter-18: Envelopes
Chapter-19: Change of Independent Variables
                                      
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 David J. Griffiths 


Introduction to Electrodynamics (4th Edition)

                                           

Introduction to Electrodynamics

Description 

Product Description :

Best book for engineering student...
For junior/senior-level electricity and magnetism courses. This book is known for its clear, concise, and accessible coverage of standard topics in a logical and pedagogically sound order. The highly polished Fourth Edition features a clear, accessible treatment of the fundamentals of electromagnetic theory, providing a sound platform for the exploration of related applications (ac circuits, antennas, transmission lines, plasmas, optics, etc.). Its lean and focused approach employs numerous new examples and problems.

Review :

'Griffiths's book is an ideal textbook for an intermediate Electrodynamics course for undergraduate students of Physics.
It is an excellent book, very well organized and readable.

Book Description : 

This book provides a rigorous, yet clear and accessible treatment of the fundamentals of electromagnetic theory and offers a sound platform for explorations of related applications (AC circuits, transmission lines, plasmas, optics and more).


                                             

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