Let P(t) be the number of insects in a laboratory experiment t days after the experiment began. There are 300 insects initially and the population increases at a continuous growth rate of 42%. Find a formula for P(t). O A) P(t) = 300e-0.42t B) P(t) = 300(1.42)' C) P(t) = 300(0.58) D) P(t) = 300e0.42t
Let P(t) be the number of insects in a laboratory experiment t days after the experiment began. There are 300 insects initially and the population increases at a continuous growth rate of 42%. Find a formula for P(t). O A) P(t) = 300e-0.42t B) P(t) = 300(1.42)' C) P(t) = 300(0.58) D) P(t) = 300e0.42t
Chapter6: Exponential And Logarithmic Functions
Section6.1: Exponential Functions
Problem 60SE: The formula for the amount A in an investmentaccount with a nominal interest rate r at any timet is...
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