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it comes from what ever wound it up in the first place. it is stored as elastic potential energy
Elastic substances usually extend or compress so that the amount of stretch or compression is proportional to the force, and clearly the speed of the rubber when released will depend on the force accelerating it. However there is a limit, called the elastic limit, to the extension and beyond that it will break
This is two different questions:- 1) Why does it come back? Newton's Third Law of Motion states that every action has an equal and opposite reaction. In other words, you've stretched it out; it will now come back. 2) Why does it hurt? A force exerted on a relatively-small area of nerves will hurt more than the same force applied over a relatively-large area. For example, stabbing a balloon with a needle will burst it; laying a large book on top of it will not burst it.
An energy level refers to a confined particle such as an atom, the energy level refers to how excited the electron is ie if an electron in the ground state (level 0) receives the correct amount of energy it will move to level 1.Energy band refers to something much more complex, it is more commonly known as band structure and describes all the energy levels that a particle such as an electron is allowed to be in and those which it is not.Basically, energy level is for a single confined particle, energy band is for when lots and lots of electrons come together for instance in a crystal structure
The energy can come from just about any source of AVAILABLE energy.
As this has answered already I will answer it again for you. 1st there is Elastic Potential energy and that energy will come into play when the band is stetched. When released the rubber bands energy is converted to Kinetic energy i.e characterized by its forward motion. When this energy is spent the rubber band reverts back to containing Potential Energy.
it comes from what ever wound it up in the first place. it is stored as elastic potential energy
the friction it makes when its in the air
melt the rubber together
The expression gum band came from the state Pennsylvania.
There are many store and sites that sell rubber band bracelets such as Walmart. They come in many different sizes and colors some may even have logos or sayings on it.
Elastic substances usually extend or compress so that the amount of stretch or compression is proportional to the force, and clearly the speed of the rubber when released will depend on the force accelerating it. However there is a limit, called the elastic limit, to the extension and beyond that it will break
Ice Watches usually have a rubber wrist band. The dial is made from plastic with rubber gaskets to waterproof the movement. They come in a variety of colors.
This is two different questions:- 1) Why does it come back? Newton's Third Law of Motion states that every action has an equal and opposite reaction. In other words, you've stretched it out; it will now come back. 2) Why does it hurt? A force exerted on a relatively-small area of nerves will hurt more than the same force applied over a relatively-large area. For example, stabbing a balloon with a needle will burst it; laying a large book on top of it will not burst it.
Yes, you can put any color rubber bands (if you are talking about the ones that fix your bite) on Damon clears, because they come out for meals and stuff. :)
The rubber in erasers comes from a variety of places depending on the eraser. It can either come from plants such as the rubber plant or it can come as a petroleum byproduct.
An energy level refers to a confined particle such as an atom, the energy level refers to how excited the electron is ie if an electron in the ground state (level 0) receives the correct amount of energy it will move to level 1.Energy band refers to something much more complex, it is more commonly known as band structure and describes all the energy levels that a particle such as an electron is allowed to be in and those which it is not.Basically, energy level is for a single confined particle, energy band is for when lots and lots of electrons come together for instance in a crystal structure