Lec 19: Rotating Rigid Bodies, Inertia, and Axis Theorems | 8.01 Classical Mechanics (Walter Lewin) @ForTheAllureOfPhysics
Lec 19: Rotating Rigid Bodies, Inertia, and Axis Theorems | 8.01 Classical Mechanics (Walter Lewin)  @ForTheAllureOfPhysics
Uploaded December 2014 | Updated September 2026, 2 hours ago
Rotating Rigid Bodies, Moments of Inertia, Parallel Axis and Perpendicular Axis Theorem. The moment of inertia for a rigid body around an axis of rotation is introduced, and related to its rotational kinetic energy. Flywheels can be used to store energy. Planets and stars have spin rotational kinetic energy, and the Crab Nebula pulsar is presented as a spectacular example.

This lecture is part of 8.01 Physics I: Classical Mechanics, as taught in Fall 1999 by Dr. Walter Lewin at MIT.

This video was formerly hosted on the YouTube channel MIT OpenCourseWare.
This version was downloaded from the Internet Archive, at archive.org/details/MIT8.01F99/.

Attribution: MIT OpenCourseWare
License: Creative Commons BY-NC-SA 3.0 US
To view a copy of this license, visit creativecommons.org/licenses/by-nc-sa/3.0/us/.
More information at http://ocw.mit.edu/terms/.

This YouTube channel is independently operated. It is neither affiliated with nor endorsed by MIT, MIT OpenCourseWare, the Internet Archive, or Dr. Lewin.
Lec 19: Rotating Rigid Bodies, Inertia, and Axis Theorems | 8.01 Classical Mechanics (Walter Lewin)Lec 10: Hookes Law, Simple Harmonic Oscillator | 8.01 Classical Mechanics, Fall 1999 (Walter Lewin)Lec 08: Frictional Forces | 8.01 Classical Mechanics, Fall 1999 (Walter Lewin)Lec 30: Simple Harmonic Oscillations of Suspended Solid Bodies | 8.01 Classical Mechanics (Lewin)Lec 23: Doppler Effect, Binary Stars, Neutron Stars, Black Holes | 8.01 Classical Mechanics (Lewin)Lec 16: Elastic and Inelastic Collisions | 8.01 Classical Mechanics, Fall 1999 (Walter Lewin)Lec 32: Review for Exam 3 | 8.02 Electricity and Magnetism, Spring 2002 (Walter Lewin)Lec 30: Polarizers and Maluss Law | 8.02 Electricity and Magnetism, Spring 2002 (Walter Lewin)Lec 25: Driven LRC Circuits and Resonance | 8.02 Electricity and Magnetism (Walter Lewin)Lec 34: Heisenbergs Uncertainty Principle | 8.01 Classical Mechanics, Fall 1999 (Walter Lewin)Lec 04: Forced Oscillations, Power, Transient Phenomena | 8.03 Vibrations and Waves (Walter Lewin)Lec 10: Exam 1 Review | 8.03 Vibrations and Waves, Fall 2004 (Walter Lewin)
For the Allure of Physics |

Lec 19: Rotating Rigid Bodies, Inertia, and Axis Theorems | 8.01 Classical Mechanics (Walter Lewin)

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER