Starting a new Lecture Notes Series on MIT 8.01SC Classical Mechanics, Fall 2016
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MIT 8.01SC Classical Mechanics, Fall 2016 By Lecture Notes together!
Lecture 1: 8.01SC Classical Mechanics Introduction
Lecture 2: 0.1 Vectors vs. Scalars
Lecture 3: 0.2 Vector Operators
Lecture 4: 0.3 Coordinate Systems and Unit Vectors
Lecture 5: 0.4 Vectors - Magnitude and Direction
Lecture 6: 0.5 Vector Decomposition into components
Lecture 7: 0.6 Going Between Representations
Lecture 10: 1.2 Position Vector in 1D
Lecture 11: 1.3 Displacement Vector in 1D
Lecture 12: 1.4 Average Velocity in 1D
Lecture 13: 1.5 Instantaneous Velocity in 1D
Lecture 14: 1.7 Worked Example: Derivatives in Kinematics
Lecture 15: 2.1 Introduction to Acceleration
Lecture 16: 2.2 Acceleration in 1D
Lecture 17: 2.3 Worked Example: Acceleration from Position
Lecture 18: 2.4 Integration
Lecture 19: 3.1 Coordinate System and Position Vector in 2D
Lecture 20: 3.2 Instantaneous Velocity in 2D
Lecture 21: 3.3 Instantaneous Acceleration in 2D
Lecture 22: 3.4 Projectile Motion
Lecture 23: 3.4 Projectile Motion
Lecture 24: 3.5 Demo: Relative Motion Gun
Lecture 25: PS.1.1 Three Questions Before Starting
Lecture 26: PS.1.2 Shooting the apple solution
Lecture 27: P.1.3 Worked Example: Braking Car
Lecture 28: P.1.4 Sketch the Motion
Lecture 30: 4.0 Week 2 Introduction
Lecture 31: 4.1 Newton's First and Second Laws
Lecture 32: 4.2 Newton's Third Law
Lecture 33: 4.3 Reference Frames
Lecture 34: 4.4 Non-inertial Reference Frames
Lecture 35: 5.1 Universal Law of Gravitation
Lecture 36: 5.2 Worked Example: Gravity - Superposition