QUESTION 2. Below is a table of the population (in 100s) of a yeast colony at one hour intervals. Time Population Time Population Time Population 1 0.096 7 1.746 13 5.948 2 0.183 8 2.573 14 6.294 9 3.507 15 6.408 10 4.410 16 6.511 11 5.133 17 6.559 12 5.597 18 6.596 3 4 5 6 0.290 0.472 0.711 1.191 Follow as in Section 3.5.3 of the notes to fit this data to a discrete-time logistic growth function. Use p = 2 in your error function. You do not need to implement a LASSO method, i.e. just take λ = 0. What is the predicted carrying capacity of the population? Is it stable?
QUESTION 2. Below is a table of the population (in 100s) of a yeast colony at one hour intervals. Time Population Time Population Time Population 1 0.096 7 1.746 13 5.948 2 0.183 8 2.573 14 6.294 9 3.507 15 6.408 10 4.410 16 6.511 11 5.133 17 6.559 12 5.597 18 6.596 3 4 5 6 0.290 0.472 0.711 1.191 Follow as in Section 3.5.3 of the notes to fit this data to a discrete-time logistic growth function. Use p = 2 in your error function. You do not need to implement a LASSO method, i.e. just take λ = 0. What is the predicted carrying capacity of the population? Is it stable?
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
Related questions
Question
SM4

Transcribed Image Text:QUESTION 2. Below is a table of the population (in 100s) of a yeast colony at one hour
intervals.
take A
Time Population
1
0.096
2
0.183
3
0.290
0.472
0.711
1.191
-
5
6
Time | Population Time Population
7
1.746
13
5.948
8
2.573
14
6.294
9
3.507
6.408
10
4.410
6.511
11
5.133
6.559
12
5.597
6.596
Follow as in Section 3.5.3 of the notes to fit this data to a discrete-time logistic growth function.
2 in your error function. You do not need to implement a LASSO method, i.e. just
Use p =
0. What is the predicted carrying capacity of the population? Is it stable?
15
16
17
18
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