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Quote from: SweBow on 2012 Oct 22, 11:13:48Quote from: Chishio Kunrin on 2012 Oct 22, 10:37:04
Are you guys working on Cloudsdale right now, or are you waiting until you're done with Everfree and/or Canterlot?
Map is being worked on.
(dont worry if that made no sense to you becuse it kinda makes sence to me... and when i say kinda i mean win my head
)
Quote from: Zygrograxgra on 2012 Oct 22, 15:19:49Spoiler: I find this adorable. Contains a GIANT snake, Pinkie Pie, and Fluttershy show
Quote from: Chishio Kunrin on 2012 Oct 22, 11:57:51
A bunch of the legendaries are protectors of the world, right? We're jerks for capturing them.
Quote from: Book Smarts on 2012 Oct 22, 08:21:13
Attack!!!
same thing.... but i got lost on that so many times its not funny
Quote from: Vertigo on 2012 Oct 21, 16:11:19
I got a book with one of my pony toys and they called princess Luna prinisess selena
that is NOT ok! i will report the creator and yell at them for something so unrespectfull!
Quote from: Chishio Kunrin on 2012 Oct 21, 08:56:06Quote from: Tekner on 2012 Oct 21, 08:12:09
Brilliant.It'd be cool if we could find a blue booth somewhere in-game. But I dunno what the booth would be for since they don't seem to have phones in Equestria.
Quote from: lurk852 on 2012 Oct 21, 00:35:47Quote from: Princess_Luna on 2012 Oct 20, 22:19:38Quote from: lurk852 on 2012 Oct 20, 14:32:22
Okay, fine!
Assuming box width = about 20 cm (not length) = 0.2 m
Carbon atom radius = 77.2 pm (assuming carbon's the biggest common atom in there) -> diameter = 144.4 pm = 144.4 * 10^-12 m
Box width / atom diameter ~= 1.38 * 10^9
Log base 2 of that thing > 30
Therefore, you could divide the boxes 30 times and still have boxes larger than an atom. This means that you could have a total of 2^30 boxes = over a billion boxes. Still pretty impressive.
i wish i knew what your talking about becuse it sounds intresting.... can you maybe dumb it down for me? say... 7th grade level, 'cuse i do wish to know what that is.
Sure - so I'm assuming that any time you have a shoebox, you can trade it away for two shoeboxes, each of which is half as large. So let's say you start with a normal-sized box, then you trade it and get two half-sized boxes - then you can trade each of those, so you end up with four quarter-sized boxes.
If you're not familiar with exponents, 2^(number) = multiply 2 by 2, and then by 2 again, etc. until you've done it (number) times. So:
2^2 = 2*2 = 4
2^3 = 2*2*2 = 8
2^4 = 2*2*2*2 = 16 etc.
Then you have logarithms, which are just reversed exponents; saying "log 16 = 4" means you have to divide 16 four times to get 2.
The number of boxes you have after (number) trades is just 2^(number), and the boxes you get are 2^(number) times smaller. Basically, I'm just seeing how many times I can divide the original shoebox's size by 2, without getting smaller than an atom. I used logarithms to find out how many times you can divide your boxes before they get too small, which is 30. So after 30 trades and divides, you have 2^30 tiny boxes, which is about a billion.