There is a population of 52,240 bacteria in a colony. if the number of bacteria doubles every 370 hours, what will the population be 740 hours from now?
There Is A Population Of 52,240 Bacteria In A Colony. If The Number Of Bacteria Doubles Every 370 Hours, What Will The Population Be 740 Hours From Now?
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There Is A Population Of 52,240 Bacteria In A Colony. If The Number Of Bacteria Doubles Every 370 Hours, What Will The Population Be 740 Hours From Now?. After 324 hours, there will be \ (210 \times 2 = \color {brown}\boxed {420}\) bacteria. Regarding standard bacteria growth problems, there three major models in use.
Ex 8.2, 30 Number of bacteria in a certain culture doubles from www.teachoo.com
After 324 hours, there will be \ (210 \times 2 = \color {brown}\boxed {420}\) bacteria. In this lesson, i present all these models. Even if you start a culture with.
And The Third Model Is Exponential Model With An Arbitrary Base.
So, after one doubling period (370 hours), the population would be 52,240 ×. After 324 hours, there will be \ (210 \times 2 = \color {brown}\boxed {420}\) bacteria. Some cells divide in fewer than 3 hours;
Therefore, We Substitute Po=52,240 And N=2 Into The Formula To Find The Future Population:
To solve this problem, we need to use the formula for exponential growth, which is p (t) = p0 * 2^ (t/t), where: In this lesson, i present all these models. 105 * 5 2^2 = 105 * 4 = 420.
We Calculate The Population After Each Doubling Period By Multiplying The Current Population By 2.
There is a population of 52,240 bacteria in a colony. If the number of bacteria doubles every 370 hours, what will the population be 740 hours from now? To calculate the bacterial population 740 hours from now, which involves two doublings, multiply the current population of 52,240 by 4 (since 2^2 = 4).
There Is A Population Of 52,240 Bacteria In A Colony.
For instance, if we consider a different initial population of 10,000 bacteria, after two doubling periods (740. Regarding standard bacteria growth problems, there three major models in use. The answer is because bacterial growth is not completely synchronized.
Even If You Start A Culture With.
324 / 162 = 2. After 162 hours, there will be \ (105 \times 2 = 210\) bacteria. Thus, after 740 hours, the population of bacteria will be 208,960 bacteria.