Question: Page Problem 1. Growth Patterns Yeast are considered as one of the best studied micro-organisms in the lab. Here is a small lab data-set about

 Page Problem 1. Growth Patterns Yeast are considered as one of

the best studied micro-organisms in the lab. Here is a small lab

data-set about the growth of yeast: l'ime in hours (1) Yonut blom

Page Problem 1. Growth Patterns Yeast are considered as one of the best studied micro-organisms in the lab. Here is a small lab data-set about the growth of yeast: l'ime in hours (1) Yonut blom in me APPLE 1 > of 2 a 1 2 3 4 3 6 90 18.3 29.0 47.2 71.1 119.1 174.6 2073 a) Graph out roughly Ap. versus P. Find the linear regression puution (Hint: slope estimation is important for solving the next parts. You can choose to not draw the graph and just find the equation also). 1) Use the data fruen part(a) to write a difference cuation derribing the stem Pn. Find the linear regression equation (Hint: Hope estimation is important for solving the next parts. You can choose to not draw the graph and just find the equation also). b) Use the data from part (x) to write a difference equation describing the tem c) Find the value of a general P, in terms of n and po (and constants). Page Problem 1. Growth Patterns Yeast are considered as one of the best studied micro-organisms in the lab. Here is a small lab data-set about the growth of yeast: l'ime in hours (1) Yonut blom in me APPLE 1 > of 2 a 1 2 3 4 3 6 90 18.3 29.0 47.2 71.1 119.1 174.6 2073 a) Graph out roughly Ap. versus P. Find the linear regression puution (Hint: slope estimation is important for solving the next parts. You can choose to not draw the graph and just find the equation also). 1) Use the data fruen part(a) to write a difference cuation derribing the stem Pn. Find the linear regression equation (Hint: Hope estimation is important for solving the next parts. You can choose to not draw the graph and just find the equation also). b) Use the data from part (x) to write a difference equation describing the tem c) Find the value of a general P, in terms of n and po (and constants)

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