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An Introduction to Engineering, SI Edition739Skickas inom 10-15 vardagar.
Fri frakt inom Sverige för privatpersoner.Discover what it takes to be a successful engineer today with Moaveni's ENGINEERING FUNDAMENTALS: AN INTRODUCTION TO ENGINEERING, SI Edition 6th Edition. This reader-friendly approach helps you develop the strong problem-solving skills and solid foundation in fundamental principles you need to become an analytical, detail-oriented and creative engineer. This edition opens with an overview of what engineers do and includes behind-the-scenes glimpses inside areas of specialization. Candid, straight-forward discussions examine what you need to succeed as an engineer today. You study basic physical concepts and laws that are important in your engineering studies as well as on the job. In addition, Professional Profiles throughout this edition highlight the work of practicing engineers around the globe and connect the fundamental principles you're learning to professional engineering success.
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For courses in Finite Element Analysis, offered in departments of Mechanical or Civil and Environmental Engineering. While many good textbooks cover the theory of finite element modeling, Finite Element Analysis: Theory and Application with...
As climate change effects become increasingly important in todays world, Moavenis ENERGY, ENVIRONMENT, AND SUSTAINABILITY helps students understand what each issue means and why it is critical to understand them. Readers learn how environmentally ...
Dr. Saeed Moaveni, P.E., is a successful author, instructor, and engineering professional. Dr. Moaveni has nearly 30 years of experience in teaching, research, and consulting in mechanical and civil engineering related areas, including inverse problems, solar and renewable energy technology, geophysical problems and education. He has taught at Colorado State University, University of South Carolina, Syracuse University, Norwich University and Minnesota State University. He also has been invited abroad as a visiting professor at numerous universities. Dr. Moaveni has received the Jack Cermak Distinguished Professor Fellowship and the American Society of Engineering Education Young (New) Faculty Award. He has served as Dean of the David Crawford School of Engineering at Norwich University and Chair of the Mechanical and Civil Engineering Department at Minnesota State University. Dr. Moaveni is a licensed professional engineer in the State of New York and a member of the American Society for Engineering Education, the American Society of Mechanical Engineers, the American Society of Heating, Ventilating, and Air Conditioning Engineers and the Council on Undergraduate Research.
Part I: ENGINEERING AN EXCITING PROFESSION.
1. INTRODUCTION TO THE ENGINEERING PROFESSION.
Engineering Work Is All Around You. Engineering as a Profession. Common Traits of Good Engineering. Engineering Disciplines.
2. PREPARING FOR AN ENGINEERING CAREER.
Making the Transition from High School to College. Budgeting your Time. Study Habits and Strategies. Getting Involved with an Engineering Organization. Your Graduation Plan.
3. INTRODUCTION TO ENGINEERING DESIGN.
Engineering Design Process. Additional Design Considerations. Teamwork. Project Scheduling and Task Chart. Engineering Standards and Codes. Water Standards in the United States.
4. ENGINEERING COMMUNICATION.
Engineering Communication Skills and Presentation of Engineering Work. Basic Steps Involved in the Solutions of Engineering Problems. Written Communication. Oral Communication. Graphical Communication.
5. ENGINEERING ETHICS.
Engineering Ethics. The Code of Ethics of the National Society of Engineers. Engineers Creed.
Part II: ENGINEERING FUNDAMENTALS.
6. FUNDAMENTAL DIMENSIONS AND UNITS.
Fundamental Dimensions and Units. Systems of Units. Unit Conversion and Dimensional Homogeneity. Significant Digits (Figures). Components and Systems. Physical Laws and Observations.
7. LENGTH AND LENGTH-RELATED VARIABLES IN ENGINEERING.
Length as a Fundamental Dimension. Ratio of Two Lengths Radians and Strain. Area. Volume. Second Moment of Area.
8. TIME AND TIME-RELATED VARIABLES IN ENGINEERING.
Time as a Fundamental Dimension. Measurement of Time. Periods and Frequencies. Flow of Traffic. Engineering Variables Involving Length and Time.
9. MASS AND MASS-RELATED VARIABLES IN ENGINEERING.
Mass as a Fundamental Dimension. Density, Specific Weight, Specific Gravity, and Specific Volume. Mass Flow Rate. Mass Moment of Inertia. Momentum. Conservation of Mass.
10. FORCE AND FORCE-RELATED VARIABLES IN ENGINEERING.
Force. Newton''s Laws in Mechanics. Moment, Torque-Force Acting at a Distance. Work-Force Acting Over a Distance. Pressure and Stress-Force Acting Over an Area. Linear Impulse-Force Acting Over Time.
11. TEMPERATURE AND TEMPERATURE-RELATED VARIABLES IN ENGINEERING.
Temperature as a Fundamental Dimension. Temperature Difference and Heat Transfer. Thermal Comfort. Heating Values of Fuels. Degree Days and Energy Estimation. Temperature-Related Material Properties.
12. ELECTRIC CURRENT AND RELATED VARIABLES IN ENGINEERING.
Electric Currents, Voltage, and Electric Power. Electric Circuits and Components. Electric Motors. Lighting Systems.
13. ENERGY AND POWER.
Work, Mechanical Energy, and Thermal Energy. Conservation of Energy. Power. Efficiency. Energy Sources, Generation, and Consumption.
Part III: COMPUTATIONAL ENGINEERING TOOLS.
14. COMPUTATIONAL ENGINEERING TOOLS: ELECTRONIC SPREADSHEETS.
Microsoft Excel Basics. Excel Functions. Plotting with Excel. Matrix Computation with Excel.
15. COMPUTATIONAL ENGINEERING TOOLS: MATLAB.
MATLAB Basics. MATLAB functions, Loop Control, and Conditional Statem...