9. The growth of a population of bacteria can be modeled by the exponential function P(t)...
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9. The growth of a population of bacteria can be modeled by the exponential function P(t) = 500 (2)'. The graph models the population of the bacteria colony P(t) as a function of time, t, that has passed. (They model the SAME THING) What was the average rate of change from the initial bacteria population to the fourth population growth? 18000 16000- 14000- 12000- 10000 8000- 6000 4000 2000- PO 9. The growth of a population of bacteria can be modeled by the exponential function P(t) = 500 (2)'. The graph models the population of the bacteria colony P(t) as a function of time, t, that has passed. (They model the SAME THING) What was the average rate of change from the initial bacteria population to the fourth population growth? 18000 16000- 14000- 12000- 10000 8000- 6000 4000 2000- PO
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Related Book For
Mathematical Applications for the Management Life and Social Sciences
ISBN: 978-1305108042
11th edition
Authors: Ronald J. Harshbarger, James J. Reynolds
Posted Date:
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