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Preface
Newtonian Dynamics
Subsections
Units
Mks Units
Standard Prefixes
Other Units
Dimensional Analysis
Deriving Physical Relationships
Scaling Laws
Newton's Laws of Motion
Introduction
Newton's First Law of Motion
Newton's Second Law of Motion
Newton's Third Law of Motion
Motion of Single Particle
Impulse
Work
Conservative Forces
Potential Energy
Energy Conservation
Energy Diagrams
Motion of System of Many Particles
Equations of Motion
Center of Mass
Explosion of Krypton
Conservation of Linear Momentum
Conservation of Angular Momentum
Invariance Laws
Inertial Reference Frame
Rotational Invariance
Translational Invariance
Galilean Invariance
Two-Particle Collisions
One-Dimensional Collisions
Totally Inelastic Collisions
Two-Dimensional Collisions
Rigid Body Rotation
Fundamental Equations
Moment of Inertia Tensor
Rotational Kinetic Energy
Power
Uniform Flywheel
Gravitational Collapse of Star
Gyroscopic Precession
Newtonian Gravity
Gravity
Gauss's Law
Gravitational Field of Earth
Gravitational Potential Energy
Gravitational Potential
Planetary Motion
Kepler's Laws
Planetary Conservation Laws
Plane Polar Coordinates
Conic Sections
Kepler's Second Law
Kepler's First Law
Kepler's Third Law
Orbital Energies
Spheroidal Mass Distributions
Gravitational Potential of Uniform Spheroid
Rotational Flattening of Earth
Surface Gravity of Earth
MacCullagh's Formula
Gravitational Torque on Axisymmetric Mass Distribution
Lunisolar Precession of Earth
Two-Body Dynamics
Binary Star Systems
Tidal Elongation of Earth