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My first edit would be on the uncertainty position - it states that position and velocity can not both be simultaneously known to within arbitrary position.  The current statement is about velocity only.  For applications of quantum mechanics, I think we should talk about more than just radioactive decay - I would like to add a link on transistors, as they seem a far more relevant application of QM in people's daily lives.  Also, radioactive decay is often thrown about in a cartoonish way without fully understanding it - which is why things like carbon dating done by evolutionists are so blindly accepted by the public, when the science to make a real measurement is actually quite complicated.
 
My first edit would be on the uncertainty position - it states that position and velocity can not both be simultaneously known to within arbitrary position.  The current statement is about velocity only.  For applications of quantum mechanics, I think we should talk about more than just radioactive decay - I would like to add a link on transistors, as they seem a far more relevant application of QM in people's daily lives.  Also, radioactive decay is often thrown about in a cartoonish way without fully understanding it - which is why things like carbon dating done by evolutionists are so blindly accepted by the public, when the science to make a real measurement is actually quite complicated.
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--[[User:CGriswald|CGriswald]] 12:51, 13 December 2008 (EST)
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