Oh, nothin. Just flexin' my intellectual muscle. I've heard women swoon over that. *cough* That and it's verily been a long day o' work. ;-)
Theorem: All numbers are equal. Proof: Choose arbitrary a and b, and let t = a + b. Then
a + b = t (a + b)(a - b) = t(a - b) a^2 - b^2 = ta - tb a^2 - ta = b^2 - tb a^2 - ta + (t^2)/4 = b^2 - tb + (t^2)/4 (a - t/2)^2 = (b - t/2)^2 a - t/2 = b - t/2 a = b
So all numbers are the same, and math is pointless. *flex*
did you come up with those things yourself? If so, I'm impressed! Here's a few neat ones, though not as mathematical-foundation defying... pi = ((-1/2)!)^(1/2) Bell curve = e^(-x/2)/(2pi)^(1/2)
hahahaha... stop with all this math talk!!! I hate math and its my LJ!!! AHHHH haha. I miss you Jordan, can't wait till 5:30 Wednesday!!! I love you babe :-D
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nice pics! we def have to hang out sometime this summer. btw, i've searched for you on myspace but can't find you. myspace me.
-jesse
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And lets def. hang out this summer, more karaoke and booty dancing!!!
<3 Kisses <3
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Proof:
We can re-write the infinite series 1/(1*3) + 1/(3*5) + 1/(5*7) + 1/(7*9)
+...
as 1/2((1/1 - 1/3) + (1/3 - 1/5) + (1/5 - 1/7) + (1/7 - 1/9) + ... ).
All terms after 1/1 cancel, so that the sum is 1/2.
We can also re-write the series as (1/1 - 2/3) + (2/3 - 3/5) + (3/5 - 4/7)
+ (4/7 - 5/9) + ...
All terms after 1/1 cancel, so that the sum is 1.
Thus 1/2 = 1.
Sexy, no? *flex* ;-)
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okay?
<3 xoxo <3
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Theorem: All numbers are equal.
Proof: Choose arbitrary a and b, and let t = a + b. Then
a + b = t
(a + b)(a - b) = t(a - b)
a^2 - b^2 = ta - tb
a^2 - ta = b^2 - tb
a^2 - ta + (t^2)/4 = b^2 - tb + (t^2)/4
(a - t/2)^2 = (b - t/2)^2
a - t/2 = b - t/2
a = b
So all numbers are the same, and math is pointless. *flex*
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Oh well
<3 kisses and hugs <3
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i miss u rats!
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<3333 so much love <3333
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did you come up with those things yourself? If so, I'm impressed! Here's a few neat ones, though not as mathematical-foundation defying...
pi = ((-1/2)!)^(1/2)
Bell curve = e^(-x/2)/(2pi)^(1/2)
We should talk math sometime.
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<3 xoxo <3
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<3 Kisses <3
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I've been crazy bad about calling people back lately, sorry love, but we will have to hang out again as soon as possible!!!
miss you love
<3 Kisses <3
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