2: Introduction to Kinematics
(Walter Lewin / MIT)
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15: Momentum and its Conservation
(Walter Lewin)
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Course Introduction
(Walter Lewin / MIT)
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1: Units, Dimensions, and Scaling Arguments
(Walter Lewin / MIT)
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3: Vectors
(Walter Lewin / MIT)
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4: The Motion of Projectiles
( Walter Lewin / MIT)
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5: Uniform Circular Motion
(Walter Lewin / MIT)
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6: Newton's First, Second, and Third Laws
(Walter Lewin / MIT)
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7: Weight, Perceived Gravity, and Weightlessnes
(Walter Lewin)
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8: Frictional Forces
(Walter Lewin / MIT)
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9: Review of Lectures 1 through 5
(Walter Lewin / MIT)
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10: Hooke's Law, Simple Harmonic Oscillator
(Walter Lewin / MIT)
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11: Work, Energy, and Universal Gravitation
(Walter Lewin / MIT)
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12: Resistive Forces
(Walter Lewin / MIT)
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13: Equation of Motion for Simple Harmonic Oscillators
(Walter Lewin / MIT)
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14: Orbits and Escape Velocity
(Walter Lewin / MIT)
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16: Elastic and Inelastic Collisions
(Walter Lewin / MIT)
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17: Momentum of Individual Objects
(Walter Lewin / MIT)
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18: Review of Lectures 6 through 15
(Walter Lewin / MIT)
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19: Rotating Rigid Bodies, Inertia, and Axis Theorems
(Walter Lewin / MIT)
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20: Angular Momentum
(Walter Lewin / MIT)
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21: Torque
(Walter Lewin / MIT)
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22: Kepler's Laws, Elliptical Orbits, and Change of Orbits
(Walter Lewin)
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23: Doppler Effect, Binary Stars, Neutron Stars and Black Holes
(Walter Lewin / MIT)
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24: Rolling Motion, Gyroscopes
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25: Static Equilibrium, Stability, Rope Walker
(Walter Lewin / MIT)
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31: Pendulums and Springs
(Walter Lewin / MIT)
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26: Elasticity and Young's Modulus
(Walter Lewin / MIT)
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27: Gases and Incompressible Liquids
(Walter Lewin / MIT)
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28: Hydrostatics, Archimedes' Principle, and Fluid Dynamics
(Walter Lewin / MIT)
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29: Review of Lectures 16 through 24
(Walter Lewin / MIT)
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30: Simple Harmonic Oscillations of Suspended Solid Bodies
(Walter Lewin / MIT)
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32: Thermal Expansion
(Walter Lewin / MIT)
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33: Ideal-Gas Law
(Walter Lewin / MIT)
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34: Heisenberg's Uncertainty Principle
(Walter Lewin / MIT)
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35: Professor Lewin’s Early days at MIT
(Walter Lewin / MIT)
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