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Advanced Diploma in Mechanical Engineering

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A complete Mechanical Engineering Program


1. Introduction
  • 1.1 the Book Mechanical Engineering Program.pdf
  • 1. Introduction

  • 2. Engineering Mechanics (Statics)
  • 1. Introduction to Statics
  • 2. Problems
  • 3. Cartesian Vectors
  • 4. Dot (scalar) product
  • 5. Moment of a Force about a Point
  • 6. Moment of a Force about an Axis
  • 7. Couples
  • 8. Resultants of Force Systems
  • 9. Resultants of Coplanar Force Systems
  • 10. Coplanar Equilibrium Analysis
  • 11. Analysis of Composite Bodies
  • 12. Trusses
  • 13. Beams
  • 14. Analysis of Internal Forces
  • 15. Friction
  • 16. Centroid-1
  • 17. Centroid-2
  • 18. Moment of Inertia

  • 3. Mechanics of Materials
  • 1. Introduction
  • 2. Bar Behavior and Hookes Law
  • 3. Poisson Effects, safety factor
  • 4. Nonuniform Bars (1)
  • 5. Nonuniform Bars (2)
  • 6. Statically Indeterminate Bars
  • 7. Change of Temperature Effects
  • 8. Shear Stress (1)
  • 9. Shear Stress (2)
  • 10. Shear strain and Hookes law in shear
  • 11. Mechanical Behavior of a Shaft (1)
  • 12. Mechanical Behavior of a Shaft (2)
  • 13. Shear Stress in Shafts, Shafts vs Bars
  • 14. Non uniform Shafts (1)
  • 15. Non uniform shafts (2)
  • 16. Pure shear, and shear modulus of elasticity
  • 17. Examples
  • 18. Beams-Shear Force and Bending Moment (1)
  • 19. Beams-Shear Force and Bending Moment (2)
  • 20. Shear Force and Bending Moment Diagrams (1)
  • 21. Shear Force and Bending Moment Diagrams (2)
  • 22. Beams-Deflection and Curvature (1)
  • 23. Beam -Bending Normal Stress (1)
  • 24. Shear Stresses in Beams
  • 25. Plane Stress and Stress Transformation (1)

  • 4. Dynamics
  • 1. Dynamics (1)
  • 2. Dynamics (2)
  • 3. Dynamics (3)
  • 4. Dynamics (4)
  • 5. Dynamics (5)
  • 6. Dynamics (6)
  • 7. Dynamics (7)
  • 8. Dynamics (8)
  • 9. Dynamics (9)
  • 10. Dynamics (10)

  • 5. Machine Elements
  • 1. Springs (1)
  • 2. Shear stress in Helical Springs
  • 3. Types of Cams
  • 4. Bushing and Roller Bearing
  • 5. Rolling Contact Bearings
  • 6. Power Transmission Devices
  • 7. Open and Cross Belt Drive
  • 8. Chain Drive
  • 9. Gear Drive
  • 10. Gear Trains
  • 11. Clutches
  • 12. Brakes

  • 6. Fluid Mechanics
  • 1. Introduction
  • 2. Properties of Fluid
  • 3. Surface Tension
  • 4. Capillarity
  • 5. Pascals Law
  • 6. Hydrostatic Law
  • 7. Hydrostatic Forces on Submerged Surfaces
  • 8. Buoyancy and Floatation
  • 9. Metacenter
  • 10. Atmospheric pressure
  • 11. Single and Double Column Manometer
  • 12. Liquids in Relative Equilibrium
  • 13. Liquid Container Subjected to Constant Vertical Acceleration
  • 14. Liquid Container Subjected to Acceleration along the Inclined Plane
  • 15. Liquid Container Subjected to Constant Rotation
  • 16. Fluid Kinematics
  • 17. Fundamentals of Flow
  • 18. Continuity Equation
  • 19. Reynolds
  • 20. Rotation and Spinning of the Liquid
  • 21. Circulation
  • 22. Fluid Dynamics
  • 23. Eulers Equation of Motion
  • 24. Bernoullis Equation
  • 25. Application of Bernoullis Equation (1)
  • 26. Application of Bernoullis Equation (2)
  • 27. Application of Bernoullis Equation (3)
  • 28. Free Liquid Jet
  • 29. Free Liquid Jet
  • 30. Momentum Equation
  • 31. Flow Through Orifices and Mouthpieces
  • 32. Discharge Through large Rectangular Submerged Orifice
  • 33. Time of Emptying Tank through an Orifice
  • 34. Laminar Flow (Viscous Flow)
  • 35. Stokes Equations of Motion
  • 36. Laminar Flow in Circular Pipes (HAGEN-POISEUILLE THEORY)
  • 37. Turbulent Flow in Pipes
  • 38. Flow Through Pipes

  • 7. Hydraulic Machines
  • 1. Introduction to Hydraulic Turbines
  • 2. Pelton Turbine (1)
  • 3. Pelton Turbine (2)
  • 4. Pelton Turbine (3)
  • 5. Francis Turbine (1)
  • 6. Francis Turbine (2)
  • 7. Propeller and Kaplan Turbines
  • 8. Classification of Pumps
  • 9. Centrifugal Pump
  • 10. Reciprocating Pumps
  • 11. Vane Pump, Lobe Pump, Gear Pump, Screw Pumps, Axial Piston Pump

  • 8. Engineering Thermodynamics
  • 1. Introduction to Thermodynamics
  • 2. Thermodynamic Equilibrium and Zeroth Law
  • 3. Thermodynamics Properties (1)
  • 4. Thermodynamics properties (2)
  • 5. First Law of Thermodynamics
  • 6. Energy of an Isolated System
  • 7. Specific Heats
  • 8. Joules Law
  • 9. Relationship between Two Specific Heats
  • 10. Enthalpy
  • 11. Application for 1st law for non flow or closed system
  • 12. Application of First low of thermodynamics
  • 13. Engineering applications of steady flow energy
  • 14. The Second Law of Thermodynamics

  • 9. Power Plant Engineering
  • 1. Power Plant Engineering
  • 2. Steam Generators Boilers
  • 3. Boiler Mountings
  • 4. Boiler Accessories

  • 10. Automotive Technology
  • 1. The Basic Engine
  • 2. Automotive Systems
  • 3. Automotive Systems 2

  • 11. Electrical Engineering Principles
  • 1. Introduction
  • 2. Kirchhoffs Laws
  • 3. Mesh Analysis
  • 4. Bridge measurements
  • 5. Electromagnetic systems
  • 6. Electromagnetic systems (2)
  • 7. Electromagnetic Induction
  • 8. Magnetic circuits
  • 9. Capacitance (1)
  • 10. Capacitance (2)
  • 11. Alternating current circuits
  • 12. Resistance connected to an alternating voltage supply
  • 13. Root mean square (rms) voltage and current
  • 14. Inductance connected to an alternating voltage supply
  • 15. j operator
  • 16. Capacitance connected to an alternating voltage supply
  • 17. Resistance and inductance in series with an alternating voltage supply
  • 18. Alternating current bridges
  • 19. Three-phase circuits
  • 20. Junction diode
  • 21. Rectifying alternating currents
  • 22. Thyristor
  • 23. Full-wave rectifiers
  • 24. Electronics
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    تاریخ انتشار: 2 آبان 1403
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