Pendulum Motion: Difference between revisions
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--[[User:Mbriatta3|mbriatta3]] ([[User talk:Mbriatta3|talk]]) 14:17, 3 December 2015 (EST) | |||
A pendulum is defined as a mass, connected to a rod or rope, that experiences simple harmonic motion as it swings back and forth without friction. The equilibrium position of the pendulum is the position when the mass is hanging directly downward. | |||
Consider a pendulum bob connected to a massless rope or rod that is held at an angle from the horizontal. If you release the mass, then the system will swing to position and back again. | |||
==The Main Idea== | ==The Main Idea== |
Revision as of 14:17, 3 December 2015
--mbriatta3 (talk) 14:17, 3 December 2015 (EST)
A pendulum is defined as a mass, connected to a rod or rope, that experiences simple harmonic motion as it swings back and forth without friction. The equilibrium position of the pendulum is the position when the mass is hanging directly downward. Consider a pendulum bob connected to a massless rope or rod that is held at an angle from the horizontal. If you release the mass, then the system will swing to position and back again.
The Main Idea
State, in your own words, the main idea for this topic Electric Field of Capacitor
Properties of Pendulum Motion
What are the mathematical equations that allow us to model this topic. For example [math]\displaystyle{ {\frac{d\vec{p}}{dt}}_{system} = \vec{F}_{net} }[/math] where p is the momentum of the system and F is the net force from the surroundings.
Period of Oscillation
Energy
Velocity
A Computational Model
Animation of a pendulum showing forces acting on the mass: the tension T in the rod and the gravitational force mg. Link
Animation of a pendulum showing the velocity and acceleration vectors. Link
Examples
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Simple
Middling
Difficult
Connectedness
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History
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See also
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