Difference between revisions of "Forest UCM NLM Oscilations"

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The skateboard of mass <math>m</math> is the system.
 
The skateboard of mass <math>m</math> is the system.
  
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== Step 1: Coordinate system==
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==Step 3: Free Body Diagram==
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==Step 4: External Force vectors==
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==Step 5: apply Netwon's 2nd Law==
  
 
[[Forest_UCM_NLM#Oscillatiions]]
 
[[Forest_UCM_NLM#Oscillatiions]]

Revision as of 11:56, 31 August 2014

Skate boarder in Half pipe

Consider a frictionless skateboard released from the top of a semi-circle (half pipe) and oriented to fall directly towards the bottom. The semi-circle has a radius [math]R[/math] and the skateboard has a mass [math]m[/math].

Note: because the skateboard is frictionless, its wheels are not going to turn.

Step 1: System

The skateboard of mass [math]m[/math] is the system.

Step 1: Coordinate system

Step 3: Free Body Diagram

Step 4: External Force vectors

Step 5: apply Netwon's 2nd Law

Forest_UCM_NLM#Oscillatiions