Week - 1 |
Physics and Measurement:
a) Standards of length, mass and time
b) Dimensional analysis.
c) Significant figures |
Week - 2 |
Spherical definitions: a) Coordinate systems b) Spherical coordinates c) Geodetic Spatial Variability |
Week - 3 |
Spatial Variability: a) Platforms of Moving Objects in 2D b) Platforms of Moving Objects in 3D |
Week - 4 |
Spatial Variability (continued): c) Variations in distance, velocity, acceleration d) Multi-axis variability |
Week - 5 |
Nature of Motion: a) Displacement, velocity and acceleration vectors b) Spatial attribute variations. |
Week - 6 |
Nature of Motion (continued): c) Linear motion variability d) Circular Motion Variability e) Relative and Relative Motion Attributes |
Week - 7 |
Nature of Energy Variability: a) Energy Attributes in Spatial Variability b) Energy Attributes with Constant and Variable Rate Content |
Week - 8 |
The Nature of Energy Variability (continued): c) Principles of Work and Energy with Constant and Variable Force Content d) Principles of Conservation of Energy |
Week - 9 |
Interacting Mass Dynamics: a) Nature of Mass b) Interaction of Mass with the Space-Time Fabric |
Week - 10 |
Interacting Mass Dynamics (continued): c) Principles of Impulse and Momentum b) Elastic and Inelastic Mass Interactions |
Week - 11 |
Nature of Circular Motion: a) Basic Principles of Rotational Motion b) Physical and Geometrical Attributes of Angular Motion |
Week - 12 |
Nature of Circular Motion (continued): c) Physical Principles of Angular Momentum and Moment of Inertia Concepts d) Basic Principles of Torque and Angular Acceleration Concepts |
Week - 13 |
The Nature of Planetary Mobility: a) Formation Processes of Planets b) Rotation Dynamics and Geometrical Attributes of Planets. |
Week - 14 |
The Nature of Planetary Mobility (continued): c) Kepler's Laws, Interpretations with Physical and Geometric Content |