3. A researcher designs an experiment using two drugs, she prepares 15 independent flasks of yeast growth medium and yeast cells. She adds tunicamycin (T) or caffeine (C) to 5 flasks each. Remaining 5 flasks get no drugs (ND). Doubling time of the yeast cells are measured in each flask, data is provided below: Flask Flask Flask ND 1 8.2 6 5.2 11 6 6.8 7 6.1 12 5.1 3 8 8. 6.2 13 5.6 4 7.6 9 5.7 14 5.2 5 7.9 10 6.3 15 6.1 c. Test if mean doubling time is different in Caffeine (C ) when compared to no drug (ND) using an ANOVA method, report an approximate p-value for the level of significance.

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3. A researcher designs an experiment using two drugs, she prepares 15 independent flasks
of yeast growth medium and yeast cells. She adds tunicamycin (T) or caffeine (C) to 5 flasks each.
Remaining 5 flasks get no drugs (ND). Doubling time of the yeast cells are measured in each flask,
data is provided below:
Flask
Flask
с
Flask
ND
1
8.2
6
5.2
11
6
2
6.8
7
6.1
12
5.1
3
8
8
6.2
13
5.6
4
7.6
5.7
14
5.2
5
7.9
10
6.3
15
6.1
c. Test if mean doubling time is different in Caffeine (C ) when compared to no drug (ND) using an ANOVA
method, report an approximate p-value for the level of significance.
Transcribed Image Text:3. A researcher designs an experiment using two drugs, she prepares 15 independent flasks of yeast growth medium and yeast cells. She adds tunicamycin (T) or caffeine (C) to 5 flasks each. Remaining 5 flasks get no drugs (ND). Doubling time of the yeast cells are measured in each flask, data is provided below: Flask Flask с Flask ND 1 8.2 6 5.2 11 6 2 6.8 7 6.1 12 5.1 3 8 8 6.2 13 5.6 4 7.6 5.7 14 5.2 5 7.9 10 6.3 15 6.1 c. Test if mean doubling time is different in Caffeine (C ) when compared to no drug (ND) using an ANOVA method, report an approximate p-value for the level of significance.
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