Every engineer should have this books.
Total page:959 pages in PDF format.
SIZE : 11 MB


Book Contains :

Chapter 1. Engineering Units 1.1
Dimensions and Units / 1.1
Systems of Units / 1.1
Conversion Factors / 1.19
Selected Physical Constants / 1.19
Dimensional Analysis / 1.19
References / 1.22

Chapter 2. General Properties of Materials 2.1
Chemical Properties / 2.1
Thermophysical Properties / 2.4
Mechanical Properties / 2.10
Electrical Properties / 2.22
Other Engineering Material Data / 2.23
Special Requirements / 2.34
References / 2.34


Chapter 3. Engineering Mathematics 3.1
Algebra / 3.1
Geometry / 3.7
Analytic Geometry / 3.12
Trigonometry / 3.18
Differential and Integral Calculus / 3.21
Differential Equations / 3.36
Laplace Transformation / 3.40
Complex Variables / 3.41
Vectors / 3.43
Statistics and Probability / 3.45
Numerical Methods / 3.47
Note on Sets and Boolean Algebra / 3.53
Digital Computers / 3.56
Calculators / 3.62
References / 3.64

Chapter 4. Applied Chemistry 4.1
Common Definitions / 4.1
Stoichiometry / 4.4
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Copyright 2003 by The McGraw-Hill Companies, Inc. Click Here for Terms of Use.
vi CONTENTS
Chemical Thermodynamic Relations / 4.22
Thermochemistry / 4.23
Chemical Equilibrium / 4.30
Phase Equilibria / 4.32
Chemical Reaction Rates / 4.35
Electrochemistry / 4.37
Organic Chemistry / 4.41
Nuclear Reactions / 4.44
Biochemistry / 4.44
Nomenclature / 4.45
References / 4.47

Chapter 5. Mechanics of Rigid Bodies 5.1
Statics / 5.1
Friction / 5.21
Kinematics / 5.24
Dynamics / 5.34
Nomenclature / 5.42
References / 5.44

Chapter 6. Mechanics of Deformable Bodies 6.1
Static Stresses / 6.1
Dynamic Stresses / 6.5
Beams / 6.5
Columns / 6.14
Torsion / 6.14
Combined Stresses / 6.15
Cylinders and Plates / 6.17
Nomenclature / 6.18
References / 6.20

Chapter 7. Thermodynamics 7.1
Introduction / 7.1
First Law of Thermodynamics / 7.3
The Second Law of Thermodynamics / 7.4
Ideal Gases / 7.6
Real Gases / 7.12
Power Cycles / 7.25
Nomenclature / 7.33
References / 7.34

Chapter 8. Mechanics of Fluids 8.1
Nature of Fluids / 8.1
Fluid Statics / 8.4
Fluid-Flow Characteristics / 8.8
Fluid Dynamics / 8.14
Boundary-Layer Flows / 8.22
Flow in Pipes / 8.32
Open-Channel Flow / 8.41
Two-Phase Flow / 8.44
Acknowledgments / 8.46
CONTENTS vii
Nomenclature / 8.46
References / 8.48

Chapter 9. Heat and Mass Transfer 9.1
Conduction / 9.1
Radiation / 9.5
Convection / 9.9
Combined Heat-Transfer Mechanisms / 9.19
Heat Exchangers / 9.21
Relation of Heat Transfer to Thermodynamics / 9.22
Nomenclature / 9.23
References / 9.26

Chapter 10. Conservation Equations and Dimensionless Groups 10.1
Conservation Equations in Fluid Mechanics, Heat Transfer, and Mass Transfer / 10.1
Dimensionless Groups and Similarity in Fluid Mechanics and Heat Transfer / 10.15
Nomenclature / 10.24
References / 10.27

Chapter 11. Topics in Applied Physics 11.1
Electric Fields / 11.1
Magnetic Fields / 11.8
Simple Electric Circuits (Examples) / 11.11
Waves / 11.13
Lasers / 11.22
Fiber Optics / 11.24
Nomenclature / 11.26
Acknowledgments / 11.27
References / 11.27

Chapter 12. Automatic Control 12.1
Introduction / 12.1
Basic Automatic-Control System / 12.4
Analysis of Control System / 12.4
Frequency Response / 12.13
Stability and Performance of an Automatic Control / 12.14
Sampled-Data Control Systems / 12.21
State Functions Concept in Control / 12.22
Modeling of Physical Systems / 12.24
General Design Procedure / 12.27
Computer Control / 12.28
Data Acquisition for Sensors and Control Systems / 12.28
Nomenclature / 12.33
References / 12.34

Chapter 13. Mechanical Engineering 13.1
Mechanical Design Engineering
Principles of Mechanism / 13.1
Force and Work Relations / 13.5
viii CONTENTS
Constructive Elements of Machines / 13.8
Motive Elements of Machines / 13.14
Energy Engineering
Pumps / 13.22
Positive Displacement Pumps—Reciprocating Type / 13.24
Positive Displacement Pumps—Rotary Type / 13.26
Centrifugal Pumps / 13.26
Miscellaneous Types of Pumps / 13.32
Compressors / 13.34
Fuels and Combustion / 13.39
Internal-Combustion Engines / 13.43
Oil Engines / 13.43
Steam-Power Plant Equipment / 13.44
Boilers and Superheaters / 13.47
Draft and Draft Equipment / 13.48
Feedwater, Accessories, and Piping / 13.49
Steam Turbines / 13.50
Condensing Equipment / 13.51
Refrigeration Engineering
Refrigeration Machines and Processes / 13.53
Properties of Refrigerants / 13.54
Overall Cycles / 13.54
Components of Compression Systems / 13.55
Absorption Systems / 13.56
Thermoelectric Cooling / 13.56
Methods of Applying Refrigeration / 13.57
Refrigerant Piping / 13.58
Cold Storage / 13.58
Cryogenics / 13.59
Industrial and Management Engineering
Activities / 13.59
Systems Concept / 13.61
Operations Research and Industrial Engineering Design / 13.62

Chapter 14. Civil Engineering and Hydraulic Engineering 14.1
Civil Engineering
Surveying / 14.1
Soil Mechanics and Foundations / 14.8
Highway and Traffic Engineering / 14.15
Railroads / 14.18
Water Supply, Sewerage, and Drainage / 14.20
Economic, Social, and Environmental Considerations / 14.41
Hydraulic Engineering
Hydraulic Turbines / 14.42


Chapter 15. Chemical Engineering, Environmental Engineering,
and Petroleum and Gas Engineering 15.1
Chemical Engineering
Diffusional Operations / 15.1
Multiphase Contacting and Phase Distribution / 15.22
CONTENTS ix
Mechanical Separations and Phase Collection / 15.25
Chemical Kinetics and Reactor Design / 15.27
Nomenclature / 15.38
Environmental Engineering
Introduction / 15.43
Wastewater Treatment / 15.44
Air Pollution Control / 15.54
Petroleum and Gas Engineering
Petrophysical Engineering / 15.69
Geological Engineering / 15.69
Reservoir Engineering / 15.70
Drilling Engineering / 15.70
Production Engineering / 15.71
Construction Engineering / 15.71
Gas Field and Gas Well / 15.71
Petroleum Enhanced Recovery / 15.71
References / 15.72


Chapter 16. Electrical Engineering 16.1
Basic Electrical Devices and Their Symbols / 16.1
Electric Circuits and Their Characteristics / 16.2
Direct-Current Circuits / 16.16
Single-Phase Alternating-Current Circuits / 16.20
Polyphase Alternating-Current Circuits / 16.33
The Magnetic Circuit / 16.37
Electrostatic Circuit / 16.50
Sources of EMF: Generators / 16.52
Sources of EMF: Electric Batteries / 16.59
Transformers / 16.64
Motors / 16.71
Alternating-Current Motors / 16.71
Direct-Current Motors / 16.83
Converters / 16.85
The Synchronous Converter / 16.85
Motor-Generator Sets / 16.88
Mercury-Arc Rectifiers (Converters) / 16.88
Control and Protective Devices and Systems / 16.89
Motor Control / 16.91

Chapter 17. Electronics Engineering 17.1
Components / 17.1
Discrete-Component Circuits / 17.9
Integrated Circuits / 17.16
Linear Integrated Circuits / 17.18
Digital Integrated Circuits / 17.21
Computer Integrated Circuits / 17.34
Computer Programming / 17.36
Computer Communications / 17.58
Industrial Electronics / 17.76
Wireless Communications / 17.78


Chapter 18. Reliability Engineering, Systems Engineering, and
Safety Engineering 18.1
Reliability Engineering
Types of Failures / 18.1
Failure Rate / 18.2
The Bathtub Diagram / 18.2
Constant-Failure-Rate Case / 18.3
Reliability Equations and Curves When Failure Rate Is Constant / 18.3
Failure Intervals / 18.4
System Reliability / 18.8
Summary of Relevant Formulas / 18.14
Systems Engineering
Systems Engineering / 18.18
Simulation / 18.19
Systems Analysis / 18.20
Optimization / 18.21
Operations Research / 18.22
Safety Engineering
Safety / 18.24
Legal Aspects of Safety / 18.25
Instrumentation and Controls / 18.26
Plant Engineer’s Function within the Safety Committee / 18.27
Accident Prevention / 18.29
Building Structure / 18.29
Means of Egress for Industrial Occupancies / 18.30
Powered Platforms, Personnel Lifts, and Vehicle-Mounted Work Platforms / 18.30
Ventilation / 18.31
Compressed Gases / 18.32
Materials Handling and Storage / 18.32
Machinery and Machine Guarding / 18.34
Mills and Calenders in the Rubber and Plastics Industries / 18.35
Mechanical Power Presses / 18.35
Forging Machines / 18.36
Mechanical Power Transmission / 18.36
Hand and Portable Powered Tools and Other Hand-Held Equipment / 18.37
Welding, Cutting, and Brazing / 18.37
Arc-Welding and Cutting Equipment / 18.37
Resistance-Welding Equipment / 18.38
Special Industries / 18.38
Electric Equipment / 18.39
Toxic and Hazardous Substances / 18.39


Chapter 19. Measurements in Engineering 19.1
Length Measurement / 19.1
Angle Measurement / 19.3
Strain Measurement / 19.4
Temperature Measurement / 19.6
Pressure Measurement / 19.12
Flow Velocity Measurement / 19.15
Measurement of Fluid Flow / 19.18
Electrical Measurements
Current, Voltage, Resistance, Frequency, Power . . . / 19.24
Other Measurements / 19.32
CONTENTS xi
Nomenclature / 19.41
References / 19.41


Chapter 20. Engineering Economy, Patents, and Copyrights 20.1
Engineering Economy
Basic Concepts / 20.1
Cost Estimating / 20.6
Breakeven Analysis / 20.15
Evaluating Investments / 20.23
Evaluating Investments Using the Time Value of Money / 20.27
Patents, Trademarks and Copyrights
Patents / 20.31
Trademarks / 20.35
Copyrights / 20.37
References / 20.38


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TMH Signals and systems.

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H S Carslaw-Introduction to theory of fourier series and integrals..

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Signals and systems with MATLAB computing and simulink modelling
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Signals and systems with MATLAB applications by Steven Karris
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Principles of Communication Systems by Taub and Schilling
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Signals and systems by Allen Openheim
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Solution Manual for B P Lathi Signals and systems
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Probability Theory
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Microcontroller programming using C
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Embedded Microcontroller Interfacing of M CORE systems
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Digital Image Processing Using MATLAB by Gonzalez Woods
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Electrical Engineering Dictionary CRCnetBASE 2000 is a continually updated CD that provides workable definitions for practicing engineers, serves as a reference and research tool for students, and offers practical information for scientists and engineers in other disciplines. Areas examined include applied electrical engineering, microwave engineering, control engineering, power engineering,digital systems engineering, and device electronics. CRCnetBASE provides handbooks as living, evolving documents - expanding as knowledge expands, growing as technology advances, and reaching to meet your information needs instantly.

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Electrical Engineering Dictionary CRCnetBASE 2000 is a continually updated CD that provides workable definitions for practicing engineers, serves as a reference and research tool for students, and offers practical information for scientists and engineers in other disciplines. Areas examined include applied electrical engineering, microwave engineering, control engineering, power engineering,digital systems engineering, and device electronics. CRCnetBASE provides handbooks as living, evolving documents - expanding as knowledge expands, growing as technology advances, and reaching to meet your information needs instantly.

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Whether you’re designing houses, landscapes, or machines, there are AutoCAD tricks-of-the-trade that even seasoned users don’t know�tips that can improve your skills, understanding, and productivity. This practical, in-depth book reveals those secrets. You’ll find smart ideas on customization, applying graphics standards, managing symbol libraries, leveraging 3D, and more. It even includes an insider’s look at features that are used in the field but often ignored in other books, such as DOS functions, scripts, and AutoLISP® programming. The final chapter, AutoCAD Puzzlers, challenges readers to solve real problems from real AutoCAD users.


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Renewable Energy (RE) sources differ from conventional sources in that, generally they cannot be scheduled, they are much smaller than conventional power stations and are often connected to the electricity distribution system rather than the transmission system. The integration of such time variable ‘distributed’ or ‘embedded’ sources into electricity networks requires special consideration.
This new book addresses these special issues and covers the following:
The characteristics of conventional and RE generators with particular reference to the variable nature of RE from wind, solar, small hydro and marine sources over time scales ranging from seconds to months
The power balance and frequency stability in a network with increasing inputs from variable sources and the technical and economic implications of increased penetration from such sources with special reference to demand side management
The conversion of energy into electricity from RE sources and the type and characteristics of generators used
The requirement to condition the power from RE sources and the type and mode of operation of the power electronic converters used to interface such generators to the grid
The flow of power over networks supplied from conventional plus RE sources with particular reference to voltage control and protection
The economics and trading of ‘green’ electricity in national and international deregulated markets
The expected developments in RE technology and the future shape of power systems where the penetration from RE sources is large and where substantial operational and control benefits will be derived from extensive use of power electronic interfaces and controllers
The text is designed to be intelligible to readers who have little previous knowledge of electrical engineering. The more analytical electrical aspects are relegated to an Appendix for readers who wish to gain a more in depth understanding. The book’s flexible structure makes its accessible to the general engineer or scientists but also caters for readers with a non-scientific background. Economists, planners and environmental specialists will find parts of the book informative.

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Engineering Design via Surrogate Modelling: A Practical Guide by Alexander Forrester, Andras Sobester, Andy Keane

Surrogate models expedite the search for promising designs by standing in for expensive design evaluations or simulations. They provide a global model of some metric of a design (such as weight, aerodynamic drag, cost, etc.), which can then be optimized efficiently.

Engineering Design via Surrogate Modelling is a self-contained guide to surrogate models and their use in engineering design. The fundamentals of building, selecting, validating, searching and refining a surrogate are presented in a manner accessible to novices in the field. Figures are used liberally to explain the key concepts and clearly show the differences between the various techniques, as well as to emphasize the intuitive nature of the conceptual and mathematical reasoning behind them.

More advanced and recent concepts are each presented in stand-alone chapters, allowing the reader to concentrate on material pertinent to their current design problem, and concepts are clearly demonstrated using simple design problems. This collection of advanced concepts (visualization, constraint handling, coping with noisy data, gradient-enhanced modelling, multi-fidelity analysis and multiple objectives) represents an invaluable reference manual for engineers and researchers active in the area.

Engineering Design via Surrogate Modelling is complemented by a suite of Matlab codes, allowing the reader to apply all the techniques presented to their own design problems. By applying statistical modelling to engineering design, this book bridges the wide gap between the engineering and statistics communities. It will appeal to postgraduates and researchers across the academic engineering design community as well as practising design engineers.

* Provides an inclusive and practical guide to using surrogates in engineering design.
* Presents the fundamentals of building, selecting, validating, searching and refining a surrogate model.

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Louis J. Ippolito "Satellite Communications Systems Engineering: Atmospheric Effects, Satellite Link Design and System Performance"

Provides an invaluable, detailed and up-to-date coverage of atmospheric effects and their impact on satellite communications systems design and performance.
Significant progress has been made in the last decade in the understanding and modelling of propagation effects on radio wave propagation in the bands utilized for satellite communications. This book provides a comprehensive description and analysis of all atmospheric effects of concern for today’s satellite systems, and the tools necessary to design the links and to evaluate system performance.
This book will serve as an excellent reference to communications engineers, wireless network and system engineers, system designers and graduate students in satellite communications and related areas.
Key features:
Provides the state of the art in communications satellite link design and performance from the practicing engineer perspective – concise descriptions, specific procedures and comprehensive solutions
Contains the calculations and tools necessary for evaluating system performance
Provides a complete evaluation of atmospheric effects, modelling and prediction
Focuses on the satellite free-space link as the primary element in the design and performance for satellite communications, and recognizes the importance of free-space considerations such as atmospheric effects, frequency of operation and adaptive mitigation techniques

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