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Username: anonycat
Join Date: 2013-01-06 22:44:54 (4 years ago)
Homebrew comments: 1
Wii number: 6889-3432-7777-6520
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Comments
Comment posted anonymously at at 2013-01-15 13:52:39 (4 years ago)
5e
Comment posted by neko1224 at 2013-01-16 14:39:36 (4 years ago)
HAHAHAHAHAHA BEAT YOU ON CYLINDER DODGE. TROLOLOLOLO LOLOLO LOLOLO LOLOLOLOLO
Comment posted anonymously at at 2013-01-16 22:15:37 (4 years ago)
0wwww
Comment posted by Darksword at 2013-01-20 00:35:03 (4 years ago)
lol
Comment posted anonymously at at 2013-02-03 10:00:59 (4 years ago)
ITS lol
Comment posted anonymously at at 2013-02-10 11:08:05 (4 years ago)
hi
Comment posted anonymously at at 2013-02-18 18:54:31 (4 years ago)
hello
Comment posted by AceZero7 at 2013-06-24 15:05:32 (4 years ago)
i came back and saw ur score that put me in 3rd. I WONT let that slide
Comment posted by AceZero7 at 2013-06-24 15:20:02 (4 years ago)
u lucky dat im rusty or eles i would be getting scores higher than 600
Comment posted by ApexRose at 2013-06-29 23:23:38 (4 years ago)
hey I'm apex do you have Super Smash Bros. Brawl or Mario Kart Wii? If you do post your FC. on my page
Comment posted by Einstein at 2014-05-10 15:28:56 (3 years ago)
Particle-wave duality, simply put, states that fundamentally, everything is both a particle and a wave. There have been numerous experiments conducted, and physicists have concluded that matter cannot be one or the other; certain experiments suggested the existence of particles, others waves. We had no choice but to say that matter existed as both. As you (hopefully) know, waves have a property known as wavelength. If matter is both a particle and a wave, then it inherits properties of both, hence the fact that classical objects possess wavelengths. The wavelength of such an object is determined by the formula: Lambda = h/p, where h is Planck's constant, lambda is wavelength, and p is momentum. Momentum is the denominator, so massive objects have smaller wavelengths, because P = mv, where m is mass and v is velocity. This formula is known as the deBroglie wave formula, and is universally applicable to any object, big or small, or even a single particle. For waves to diffract around objects, their wavelength needs to be proportional to (or at least comparable to) the length of the object to diffract around. Since subatomic particles have such minute momentum (due to small mass), they tend to have wavelengths more comparable to everyday objects, but still not nearly there, since Planck's constant is equal to 6.626 * 10^-34, which, for those of you who don't know scientific notation, is a very small number.
Comment posted by Loganrocks at 2014-09-21 19:03:21 (3 years ago)
TL2R
Comment posted by NotAFunPerson at 2015-06-07 19:04:15 (2 years ago)
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Comment posted by NotAFunPerson at 2015-06-07 21:03:59 (2 years ago)
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