Dynamics
- Definition of Motion and Dynamics, System of Units, Gravity and effects of Altitude and Earth Rotation, Dimensions
- Kinematics of Particles, Selection of Coordinates, Rectilinear Motion, Curvilinear Planar Motion, Rectangular coordinates, Normal and tangential coordinates, Polar coordinates
- Three-Dimensional Curvilinear Motion, Cylindrical Coordinates, Spherical Coordinates, Relative Motion
- Kinetics of Particles, Newton's Second Law, Equation of Motion, Constrained and Non-constrained Motion, Free Body Diagram
- Methods of Analytical Dynamics, Principle of Work and Kinetic Energy, Work of Linear Springs, Work in Curvilinear Motion
- Principle of Impulse and Linear Momentum, Principle of Conservation of Momentum, Principle of Impulse and Angular Momentum, Principle of Conservation of Angular Momentum
- Direct Central Impact, Coefficient of Restitution, Energy Loss during Impact, Oblique Central Impact
- Kinetics of System of Particles, Generalized Newton's Second Law, Work-Energy, Impulse-Momentum, Conservation of Energy and Momentum
- Plane Kinematics of Rigid Bodies, Definition of a Rigid Body, Translation and Rotation of a Rigid Body, Absolute Motion, Relative Velocity, Instantaneous Center of Zero Velocity
- Relative Acceleration due to Rotation, Interpretation of Relative Acceleration Equation, Motion Relative to Rotating Axes, Time Derivatives of Unit Vectors, Coriolis Acceleration
- Plane Kinetics of Rigid Bodies, Equations of Planar Motion, Momentum Equations, System of connected Bodies
- Analysis of Problems, Translation of Rigid Bodies, Fixed-Axis Rotation, General Plane Motion
- Methods of Analytical Dynamics for Rigid Bodies, Work-Energy Relations, Potential Energy and Work-Energy Equation, Principle of Virtual Work and Differential Motion