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Mathematics
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OpenStudy (anonymous):
whoo knows how to do exponential growth and decay i could really use some help
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OpenStudy (anonymous):
may be I can help
OpenStudy (anonymous):
alrigt ill give you a practice problem
OpenStudy (anonymous):
ok
OpenStudy (anonymous):
OpenStudy (anonymous):
don't know how to do this what grade is this for math
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OpenStudy (anonymous):
this is algebra @hleper
OpenStudy (anonymous):
can you help ? @Sepeario
OpenStudy (anonymous):
let me try
OpenStudy (anonymous):
ok
OpenStudy (anonymous):
no I forgot how to do this
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OpenStudy (anonymous):
ok can someone please
OpenStudy (anonymous):
@BAdhi ?
OpenStudy (badhi):
\(P_0 = Ae^{kt_0}\)
\(P_1 = Ae^{kt_1}\)
\(\frac{P_0}{P_1} = e^{k(t_0-t_1)}\) Find k with this.
Use the same expression to find the population in 2006
OpenStudy (anonymous):
could you show me how to solve it? @BAdhi
OpenStudy (badhi):
substitute \(P_0 = 65, t_0 = 1995, P_1 = 69, t_1 = 1998\) then there will only one variable unknown which is \(k\). Find the value of it.
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OpenStudy (anonymous):
ok
OpenStudy (badhi):
Take the population in 2006 as \(P\) and time as t then the same equation can be used as follows
\(\frac{P}{P_1}=e^{k(t-t_1)}\) Find P from here
OpenStudy (anonymous):
alright
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