Solving Practical Engineering Mechanics Problems
eBook - PDF

Solving Practical Engineering Mechanics Problems

Fluid Mechanics

  1. English
  2. PDF
  3. Available on iOS & Android
eBook - PDF

Solving Practical Engineering Mechanics Problems

Fluid Mechanics

About this book

Fluid Mechanics is the study of liquid or gas behavior in motion or at rest. It is one of the fundamental branches of Engineering Mechanics, which is important to educate professional engineers of any major. Many of the engineering disciplines apply Fluid Mechanics principles and concepts. In order to absorb the materials of Fluid Mechanics, it is not enough just to consume theoretical laws and theorems. A student also must develop an ability to solve practical problems. Therefore, it is necessary to solve many problems independently. This book is a supplement to the Fluid Mechanics course in learning and applying the principles required to solve practical engineering problems in the following branches of Fluid Mechanics: Hydrostatics, Fluid Kinematics, Fluid Dynamics, Turbulent Flow and Gas Dynamics (Compressible Fluid Flow). This book contains practical problems in Fluid Mechanics, which are a complement to Fluid Mechanics textbooks. The book is the product of material covered in many classes over a period of four decades at several universities. It consists of 18 sets of problems where students are introduced to various topics of the Fluid Mechanics. Each set involves 30 problems, which can be assigned as individual homework as well as test/exam problems. The solution of a similar problem for each set is provided. The sequence of the topics and some of the problems were adopted from Fluid Mechanics by R. C. Hibbeler, 2nd edition, 2018, Pearson.

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Yes, you can access Solving Practical Engineering Mechanics Problems by Sayavur Bakhtiyarov in PDF and/or ePUB format, as well as other popular books in Tecnologia e ingegneria & Design industriale. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover
  2. Copyright Page
  3. Title Page
  4. Contents
  5. Preface
  6. Acknowledgments
  7. Topic FM-1
  8. Topic FM-2
  9. Topic FM-3: Measurement of Static Pressure: Manometer Rule
  10. Topic FM-4: Determination of Hydrostatic Force on a Surface and Buoyancy
  11. Topic FM-5: Determination of Hydrostatic Force on a Surface and Buoyancy
  12. Topic FM-6: Kinematics of Fluid Motion and Streamline Coordinates (Unsteady Non-Uniform Flow)
  13. Topic FM-7: Conservation of Mass
  14. Topic FM-8: Application of Bernoulli Equation
  15. Topic FM-9: Application of Linear Momentum Equation
  16. Topic FM-10: Application of Navier-Stokes Equations
  17. Topic FM-11: Dimensional Analysis and Buckingham Pi Theorem
  18. Topic FM-12: Laminar Flow of Viscous Fluid
  19. Topic FM-13: Turbulent Pipe Flow
  20. Topic FM-14: Pipe Flow Design
  21. Topic FM-15: Boundary Layer: Drag Coefficient
  22. Topic FM-16: Open-Channel Flow
  23. Topic FM-17: Compressible Fluid Flow: Isentropic Flow Through Converging and Diverging Nozzles
  24. Topic FM-18: Turbomachines: Radial-Flow Pumps
  25. Author Biography