Mechanical Engineering
University — Year 1
Statics→Dynamics→Stress and Strain→First Law of Thermodynamics→Fluid Mechanics→Bernoulli's Principle→Vectors and Scalars→Force Equilibrium Conditions→Moment of a Force→Static and Kinetic Friction→Free Body Diagrams→Truss Analysis Methods→Frame and Structure Analysis→Center of Gravity→Moment of Inertia→Kinematics of Particle Motion→Newton's Laws of Motion→Kinetics: Force and Acceleration→Work-Energy Theorem→Conservation of Mechanical Energy→Power and Efficiency→Linear Momentum and Impulse→Conservation of Linear Momentum→Elastic and Inelastic Collisions→Rotational Motion Kinematics→Angular Momentum and Torque→Stress and Strain→Young's Modulus and Elasticity→Poisson's Ratio→Shear Stress and Shear Modulus→Bending Moment and Shear Force Diagrams→Bending Stress in Beams→Torsion in Circular Shafts→Combined Stresses→First Law of Thermodynamics→Second Law of Thermodynamics→Ideal Gas Law→Entropy and Entropy Change→Thermodynamic Cycles→Continuity Equation in Fluid Mechanics→Bernoulli's Equation→Fluid Flow Properties→Viscosity and Newtonian Fluids→Hydrostatic Pressure→Orthographic Projections→Dimensioning and Tolerancing→Sectioning and Section Views→Ordinary Differential Equations→Matrices and Linear Systems→Multivariable Calculus→
University — Year 2
Heat Transfer→Shear Force & Bending Moment→Gears and Gear Ratios→Entropy and Entropy Generation→Carnot Cycle→Rankine Cycle→Continuity Equation in Fluid Flow→Navier-Stokes Equations→Boundary Layer Theory→Drag and Lift Forces→Hooke's Law→Yield Strength and Failure Criteria→Beam Deflection Theory→Torsion in Circular Shafts→Combined Loading and Principal Stresses→Fatigue and Fatigue Limits→Kinematics of Rigid Bodies→Kinetics and Newton's Second Law for Rotation→Energy Methods in Mechanics→Lagrangian Mechanics→Free Vibrations→Damped Vibrations→Forced Vibrations and Resonance→Natural Frequency and Period→Fourier's Law of Heat Conduction→Convection Heat Transfer→Radiation Heat Transfer→Thermal Resistance and Thermal Circuits→Transient Heat Transfer→Steady-State Heat Transfer→Phase Diagrams and Phase Transformations→Crystal Structure and Defects→Mechanical Properties of Materials→Deformation and Fracture Mechanisms→Composite Materials→PID Control Systems→Transfer Functions→Stability Analysis→Root Locus Method→Bode Plots and Frequency Response→Pump and Compressor Performance→Turbine Cycles and Performance→
University — Year 3
Carnot Cycle and Efficiency→Refrigeration and Heat Pump Cycles→Entropy Generation and Irreversibility→Heat Transfer by Conduction→Heat Transfer by Convection→Heat Transfer by Radiation→Fourier's Law of Heat Conduction→Thermal Resistance Networks→Fin Analysis and Optimization→Laminar and Turbulent Flow→Pipe Flow and Pressure Drop→Drag and Lift Forces in Aerodynamics→Stress and Strain Analysis→Failure Criteria and Material Strength→Fatigue Analysis and S-N Curves→Machine Component Design→Shaft Design and Torsion→Rolling Bearing Selection and Life→Gear Design and Analysis→Welding and Joint Design→Linear Systems and Control→Transfer Functions→Feedback Control Systems→Stability Analysis and Bode Plots→Vibration of Single Degree of Freedom Systems→Free and Damped Vibration→Forced Vibration and Resonance→Multi-Degree of Freedom Systems→Modal Analysis and Natural Frequencies→Material Properties and Selection→Overview of Manufacturing Processes→Casting Processes→Machining Processes→Turbines and Compressors→Energy Conversion and Power Plants→Internal Combustion Engines→Finite Element Method Fundamentals→FEA for Stress Analysis→Engineering Optimization Techniques→Computational Fluid Dynamics Basics→Professional Ethics and Safety→