When the rubber band is released the potential energy is quickly converted to kinetic motion energy.
Force of rubber band.
Even if the wheels do spin there might not be enough friction with the ground causing them to spin in.
A rubber band s elasticity is explained by looking at rubber elasticity and thermodynamics.
To investigate how a force parallel to an inclined plane changes find a rubber band some objects to hang from the end of the rubber band and a board you can position at different angles.
For example if the pegs are placed such that the band is stretched to 52 inches the force the bands apply to the pegs are 57 6 lbs per inch.
The rubber band can slip relative to the wooden axle preventing the wheels from spinning.
After you get the rubber band stretched just a little bit it is very spring like.
How much does the rubber band stretch when you hang the object from the end of the board.
To get it there you have to apply a force to overcome gravity for a certain distance the height of the table.
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In this case the linear function fitting the straight part of the data gives a spring constant of 17 38 n m.
The gravitation potential energy is equal to the force times the distance the.
This is equal to one half the mass of the rubber band multiplied by its velocity in meters.
In rubber the elastic force is due to the thermal interactions of the molecules within the material.
There are several molecular mechanisms that work together to produce the elastic force.
Understanding the physics of elasticity requires a knowledge of advanced mathematics chemistry and statistical physics particularly the concept of entropy.