The table gives the number of yeast cells in a new laboratory culture. Time (hours) Yeast cells Time (hours) Yeast cells 18 10 509 39 12 597 4 80 14 640 6. 171 16 664 з36 18 672 (a) Plot the data and use the plot to estimate the carrying capacity M for the yeast population. M = 340 M = 680 M= 20 OM = 0 OM= 1200 (b) Use the data to estimate the initial relative growth rate. (Use the first two data points.) (C) Find an exponential model for these data. (Use the relative growth rate found in part (b).) P(t) = ON

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Ch. 9.4 q3

The table gives the number of yeast cells in a new laboratory culture.
Time (hours) Yeast cells Time (hours)| Yeast cells
18
10
509
39
12
597
80
14
640
6
171
16
664
336
18
672
(a) Plot the data and use the plot to estimate the carrying capacity M for the yeast population.
M = 340
M = 680
M = 20
OM= 0
OM- 1200
(b) Use the data to estimate the initial relative growth rate. (Use the first two data points.)
(c) Find an exponential model for these data. (Use the relative growth rate found in part (b).)
P(t) =|
Find a logistic model for these data. (Use the relative growth rate found in part (b).)
P(t) =
Transcribed Image Text:The table gives the number of yeast cells in a new laboratory culture. Time (hours) Yeast cells Time (hours)| Yeast cells 18 10 509 39 12 597 80 14 640 6 171 16 664 336 18 672 (a) Plot the data and use the plot to estimate the carrying capacity M for the yeast population. M = 340 M = 680 M = 20 OM= 0 OM- 1200 (b) Use the data to estimate the initial relative growth rate. (Use the first two data points.) (c) Find an exponential model for these data. (Use the relative growth rate found in part (b).) P(t) =| Find a logistic model for these data. (Use the relative growth rate found in part (b).) P(t) =
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