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--
:
E^2= (p^2c^2)+([<delta>m^2]c^4)
which implies that
E= [mc^2]/[<sq. root> 1-(v^2/c^2)]
when p=0 (in eq 1, or in 2 rearranged to 1])
E=mc^2
[as rest mass cannot be attained, p can never=0, so E should, not be calculated as = mc^2]
--
~what you are,or appear to me to be,or appear to be to you,changes so quickly,so horrifyingly,i certainly can't keep up with it and i'm damn sure you can't either.but who you are i can't even begin to recognize,and sometimes i recognize it so wholly~
nerd.
--
:
E^2= (p^2c^2)+([<delta>m^2]c^4)
which implies that
E= [mc^2]/[<sq. root> 1-(v^2/c^2)]
when p=0 (in eq 1, or in 2 rearranged to 1])
E=mc^2
[as rest mass cannot be attained, p can never=0, so E should, not be calculated as = mc^2]
--
Narsism Laws:
Path 103 - Good looking guys are either:
1. Taken
2. Gay
3. Dead
4. Lost but not found...
5. Animated
6. Are narcissists and are WAY too in love with themselves
--
Narsism Laws:
Path 103 - Good looking guys are either:
1. Taken
2. Gay
3. Dead
4. Lost but not found...
5. Animated
6. Are narcissists and are WAY too in love with themselves
--
~what you are,or appear to me to be,or appear to be to you,changes so quickly,so horrifyingly,i certainly can't keep up with it and i'm damn sure you can't either.but who you are i can't even begin to recognize,and sometimes i recognize it so wholly~
Much appreciated
--
~what you are,or appear to me to be,or appear to be to you,changes so quickly,so horrifyingly,i certainly can't keep up with it and i'm damn sure you can't either.but who you are i can't even begin to recognize,and sometimes i recognize it so wholly~
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