In a laboratory experiment, the population of bacteria in a petri dish started off at 3700 and is growing exponentially at 11% per day. Write a function to represent the population of bacteria after t days, where the hourly rate of change can be found from a constant in the function. Round all coefficients in the function to four decimal places. Also, determine the percentage rate of change per hour, to the nearest hundredth of a percent. Answer Attempt 4 out of 4 Function: f(t)=3700 (1+.11 ) Growth v (t/24) .11 % increase per hour Submit Answer

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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In a laboratory experiment, the population of bacteria in a petri dish started off at 3700 and is
growing exponentially at 11% per day. Write a function to represent the population of bacteria
after t days, where the hourly rate of change can be found from a constant in the function.
Round all coefficients in the function to four decimal places. Also, determine the percentage rate
of change per hour, to the nearest hundredth of a percent.
Answer Attempt 4 out of 4
Function: f(t) = 3700(1+.11
Growth v
(t/24)
.11% increase per hour Submit Answer
Transcribed Image Text:In a laboratory experiment, the population of bacteria in a petri dish started off at 3700 and is growing exponentially at 11% per day. Write a function to represent the population of bacteria after t days, where the hourly rate of change can be found from a constant in the function. Round all coefficients in the function to four decimal places. Also, determine the percentage rate of change per hour, to the nearest hundredth of a percent. Answer Attempt 4 out of 4 Function: f(t) = 3700(1+.11 Growth v (t/24) .11% increase per hour Submit Answer
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