Eh, I haven't updated since July, hahhahaha~ Actually, I've been sketching and such...really...*and* I drew fanart...a few months ago. I'll prolly scan it before I leave for break. I actually drew two original characters while I was in the middle of studying/reading for exams...and speaking about exams...I should be studying right now since I have one tonight >.< But it's just intro to astronomy so it should be fine...hopefully~ I think I shall update my deviant art after this exam : )
Just a small note to say that I haven't totally disappeared ^^
On a more cheerful note--Final Fantasy XIII Versus' trailer came out!!!!!!!! Hahaha, and I spent quite some time watching and rewatching it yesterday instead of studying

; not good. And I just found the reason why Nobuo Uematsu disappeared for quite a while...he's technically not a part of Square Enix anymore...sad. Oh well. Before I think about XIII Versus, I should really look forward to XIII first (since it's gonna come out first...)..well, actually, I should buy and play XII first >.>
Back to studying~
--Shru.T
--
And pray that there's intelligent life somewhere out in space, cuz there's bugger-all down here on Earth.
--Eric Idle, "The Galaxy Song"
--
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
--
DO NOT CLICK!!!!!!!!!!
:[link]
--
***~***~***~***~***~***~***~***~***~
'Tis like an eternal journey
Yet when the end cometh
T'was seemingly only a moment ago
***~***~***~***~***~***~***~***~***~
--
DO NOT CLICK!!!!!!!!!!
:[link]
--
Did you know that:
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 [which gives 1])
E=mc^2....
(In reality, p can never=0, so E should, realistically not be =mc^2, )
--
***~***~***~***~***~***~***~***~***~
'Tis like an eternal journey
Yet when the end cometh
T'was seemingly only a moment ago
***~***~***~***~***~***~***~***~***~
--
Did you know that:
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 [which gives 1])
E=mc^2....
(In reality, p can never=0, so E should, realistically not be =mc^2, )
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