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Natural Wonder

Elite Bodybuilder

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posted December 08, 2000 09:41 AM

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Medicine.
One leukemic cell injected into a healthy mouse will divide into 2 cells in about 1/2 day. At the end of the day these 2 cells will divide into 4. This doubling continues until 1 billion cells are formed; then the animal dies with leukemic cells in every part of the body.
When, to the nearest day, will the mouse die?


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madbomber31

Pro Bodybuilder

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From:taking my yankee ass back to DETROIT CITY!!!
Registered: Dec 2000

posted December 08, 2000 10:07 AM

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21.5 DAYS?


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kat

Amateur Bodybuilder

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posted December 08, 2000 10:35 AM

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Indeterminate..you don't actually die from cancer cells, you die from the complications caused by such cells...Usually, it is pneumonia that gets you in the end because your immunesystem is so reduced, and your body weight is negligable you become susceptible to raging infection.


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Natural Wonder

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posted December 08, 2000 10:42 AM

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Madbomber what did you used to get the answer. Shit I should of double check it, but my broke ass just sold my math book back to get 12 bones for gas and Mc Donald. Anyway in class we used Logs to get the answer


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kat

Amateur Bodybuilder

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posted December 08, 2000 10:45 AM

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This is one of those times when math isnt very realistic.


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Natural Wonder

Elite Bodybuilder

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posted December 08, 2000 10:47 AM

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Kat it's about number I don't think they worry about that too much. I don't know what grade I'd get it I just wrote about how the problem is irationnal!


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Warik

Amateur Bodybuilder

Posts: 270
From:Miami, FL
Registered: Sep 2000

posted December 08, 2000 02:17 PM

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Exponential growth... EZ

y = Ce^(kt)

y = your total cells after a given period of time (t)
C = the starting number of cells
k = growth constant

The cells double every half a day, so that means that they quadruple every whole day, so the growth rate is 400% per day.

So

4 = (1)e^(k)(1) (since t = 1 day)

ln (4) = k

k = ln (4) (our constant is the natural log of four)

so

y = (1)e^((ln 4)(t))

So we are looking for 1 billion cells, so we must solve for (t).

1,000,000,000 = (1)e^((ln 4)(t))

1,000,000,000 = e^((ln 4)(t))

ln (1,000,000,000) = (ln 4)t

t = ln (1,000,000,000) / ln (4)

Your mouse is dead in 15 days (14.948676427 to be almost-exact).

Calculus is fun.

-Warik


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Warik

Amateur Bodybuilder

Posts: 270
From:Miami, FL
Registered: Sep 2000

posted December 09, 2000 12:20 AM

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bump for Natural Wonder...

-Warik


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Hyprzo

Cool Novice

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posted December 09, 2000 12:59 AM

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What a coincidence we were reviewing the exonential growth equation today in class.


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