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...999 = infinity?

Name: Anonymous 2006-11-23 6:41

:confused: explain this to me /sci/

Name: Anonymous 2006-11-23 6:51

isn't 0 = infinity?

Name: Anonymous 2006-11-23 6:53

>>2
negative, x/0 =inf

Name: Anonymous 2006-11-27 1:39

>>1
There are many ways to represent a number, right? For example, 1/1 = 2/2 = 3/3 = 4/4 = ...
.9 repeating is just another way of representing the concept of the multiplicative identity.

Name: Anonymous 2006-11-27 15:09

You can't divide by zero. If you want a value that stretches on for infinity, you can just do something like :

10 / 3

Wich would of course be 3 point 3 with an infinite number of decimals.

Name: Anonymous 2006-11-27 18:00

So is 3.333....3 infinite? What about 3.333...4?

Name: Anonymous 2006-11-28 2:05

>>6
.3 repeating and .3 repeating 4 are the exact same thing, assuming that the 3s repeat ad infinitum. In layman's terms, you never reach the infinitieth decimal point (the 4), so they are the same. Similarly, .0 repeating 1 = 0.

Because of the definition of real numbers, they are merely the limit of a cauchy sequence of rational numbers. Thus we must wonder if
lim{x[n]|x[i]=sum{3/10^i}} = lim{x[n]|x[i]=sum{3/10^i}}+lim{4/10^n} as n->infinity

Turns out, by simple maths, lim{4/10^n}->0 as n->infinity, so we're left with:
lim{x[n]|x[i]=sum{3/10^i}} = lim{x[n]|x[i]=sum{3/10^i}} as n->infinity

Replacing lim{x[n]|x[i]=sum{3/10^i}} with, say, A, we have:
A=A as n->infinity, which is always true. Thus .3 repeating and .3 repeating 4 are the same real number. QED.

Of course this proof was thrown together at 1am when I ought to be studying for my law school finals, so there may be trivial holes. However, the gist of the proof is correct, and the holes are absolutely surmountable.

Name: Anonymous 2006-12-01 14:27

>>7
lol THREAD OVER

Name: Anonymous 2006-12-01 16:30

>>7
You win for being serious and posting a decent demonstration, for which I respect you a lot. It doesn't change the fact, however, that you got trolled by my >>6.

Name: Anonymous 2008-09-08 6:39

you all lose

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