The number of bacteria in a culture is given by the function n(t)=920e0.4t◂=▸n(t)=920◂◽˙▸e0.4t where tt is measured in hours. (a) What is the relative rate of growth of this bacterium population? Your answer is percent (b) What is the initial population of the culture (at t=0)? Your answer is (c) How many bacteria will the culture contain at time t=5? Your answer is
The number of bacteria in a culture is given by the function n(t)=920e0.4t◂=▸n(t)=920◂◽˙▸e0.4t where tt is measured in hours. (a) What is the relative rate of growth of this bacterium population? Your answer is percent (b) What is the initial population of the culture (at t=0)? Your answer is (c) How many bacteria will the culture contain at time t=5? Your answer is
Chapter10: Exponential And Logarithmic Functions
Section10.5: Solve Exponential And Logarithmic Equations
Problem 10.87TI: Researchers recorded that a certain bacteria population grew from 100 to 500 in 6 hours. At this...
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The number of bacteria in a culture is given by the function
n(t)=920e0.4t◂=▸n(t)=920◂◽˙▸e0.4t
where tt is measured in hours.
(a) What is the relative rate of growth of this bacterium population?
Your answer is percent
(b) What is the initial population of the culture (at t=0)?
Your answer is
(c) How many bacteria will the culture contain at time t=5?
Your answer is
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