About
This class is an introduction to the dynamics and vibrations of lumped-parameter models of mechanical systems. Topics include kinematics; force-momentum formulation for systems of particles and rigid bodies in planar motion; work-energy concepts; virtual displacements and virtual work; Lagrange's equations for systems of particles and rigid bodies in planar motion; linearization of equations of motion; linear stability analysis of mechanical systems; free and forced vibration of linear multi-degree of freedom models of mechanical systems; and matrix eigenvalue problems. The class includes an introduction to numerical methods and using MATLAB® to solve dynamics and vibrations problems.
This version of the class stresses kinematics and builds around a strict but powerful approach to kinematic formulation which is different from the approach presented in Spring 2007. Our notation was adapted from that of Professor Kane of Stanford University.
Recommended Citation
For any use or distribution of these materials, please cite as follows:
Sanjay Sarma, Nicholas Makris, Yahya Modarres-Sadeghi, and Peter So, course materials for 2.003J / 1.053J Dynamics and Control I, Fall 2007. MIT OpenCourseWare (http://ocw.mit.edu), Massachusetts Institute of Technology. Downloaded on [DD Month YYYY].
Course Homepage: 2.003J / 1.053J Dynamics and Control I Fall 2007
Course features at MIT OpenCourseWare page: *Syllabus *Readings *MATLAB Sessions *Assignment *Exams *Download Course Materials
Related categories
Uploaded videos:
Lecture 1: Course information, Begin kinematics: frames of reference and fram...
Feb 28, 2013
·
3396 Views
Lecture 2: The "spider on a Frisbee" problem, Kinematics using first principles:...
Feb 28, 2013
·
2458 Views
Lecture 3: Pulley problem, angular velocity, magic formula
Feb 28, 2013
·
3664 Views
Lecture 4: Magic and super-magic formulae
Feb 28, 2013
·
2080 Views
Lecture 5: Super-magic formula, degrees of freedom, non-standard coordinates, ki...
Feb 28, 2013
·
2319 Views
Lecture 7: Impulse, skier separation problem
Feb 28, 2013
·
1966 Views
Lecture 8: Single particle: angular momentum, example problem Two particles: du...
Feb 28, 2013
·
2186 Views
Lecture 9: Dumbbell problem, multiple particle systems, rigid bodies, derivation...
Feb 28, 2013
·
2397 Views
Lecture 10: Three cases, rolling disc problem
Feb 28, 2013
·
2100 Views