At noon, to begin a study, a petri dish had 3000 bacteria cells. The number of cells in the petri dish is increasing at a continuous rate of 4% per hour. If t is the number of hours since the start of the study and f(t) is the number of bacteria cells, write continuous exponential function expressing the relationship between f(t) and t. Of(t)=3000e-04t f(t)=3000(0.96)t f(t)=3000et f(t)=3000(.004)
At noon, to begin a study, a petri dish had 3000 bacteria cells. The number of cells in the petri dish is increasing at a continuous rate of 4% per hour. If t is the number of hours since the start of the study and f(t) is the number of bacteria cells, write continuous exponential function expressing the relationship between f(t) and t. Of(t)=3000e-04t f(t)=3000(0.96)t f(t)=3000et f(t)=3000(.004)
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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