Thursday, March 17, 2022 9:50 AM To check pain-relieving medications for potential side effects on blood pressure, it is decided to give equal doses of each of four medications to test subjects. To control for the potential effect of weight, subjects are classified by weight groups. Subjects are approximately the same age and are in general good health. Two subjects in each category are chosen at random from a large group of male prison volunteers. Subjects' blood pressures 15 minutes after the dose are shown below. Research question: Is mean blood pressure affected by body weight and/or by medication type? Systolic Blood Pressure of Subjects (mmHg) Ratio of Subject's Weight to Normal Weight Medication M1 Medication M2 Medication M3 Medication M4 Under 1.1 128 144 140 131 Under 1.1 134 134 133 128 1.1 to 1.3 137 136 133 130 1.1 to 1.3 142 144 145 134 1.3 to 1.5 144 147 147 139 1.3 to 1.5 152 154 149 142 (b) Fill in the missing data. (Round your table of means values to 1 decimal place, SS and Fvalues to 2 decimal places, MS values to 3 decimal places, and p-values to 4 decimal places.) Table of Means Means: Factor 2 (Medication) Factor 1 (Weight) Medication 1 Medication 2 Medication 3 Medication 4 Total 1.1 or Less 1.1 to 1.3 1.3 to 1.5 Total ANOVA TABLE Source SS df MS p-value Factor 1 (Weight) Factor 2 (Medication) Interaction Error Total (d) Perform Tukey multiple comparison tests. (Input the mean values within the input boxes of the first row and input boxes of the first column. Round your t- values and critical values to 2 decimal places and other answers to 1 decimal place.)

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To Check pain

Thursday, March 17, 2022
9:50 AM
To check pain-relieving medications for potential side effects on blood pressure, it is decided to give equal doses of each of four medications to test subjects. To
control for the potential effect of weight, subjects are classified by weight groups. Subjects are approximately the same age and are in general good health. Two
subjects in each category are chosen at random from a large group of male prison volunteers. Subjects' blood pressures 15 minutes after the dose are shown
below. Research question: Is mean blood pressure affected by body weight and/or by medication type?
Systolic Blood Pressure of Subjects (mmHg)
Ratio of Subject's Weight to Normal Weight Medication M1 Medication M2 Medication M3 Medication M4
Under 1.1
128
144
140
131
Under 1.1
134
134
133
128
1.1 to 1.3
137
136
133
130
1.1 to 1.3
142
144
145
134
1.3 to 1.5
144
147
147
139
1.3 to 1.5
152
154
149
142
(b) Fill in the missing data. (Round your table of means values to 1 decimal place, SS and Fvalues to 2 decimal places, MS values to
3 decimal places, and p-values to 4 decimal places.)
Table of Means
Means:
Factor 2 (Medication)
Factor 1 (Weight)
Medication 1
Medication 2
Medication 3
Medication 4
Total
1.1 or Less
1.1 to 1.3
1.3 to 1.5
Total
ANOVA TABLE
Source
S
df
MS
F
p-value
Factor 1 (Weight)
Factor 2 (Medication)
Interaction
Error
Total
(d) Perform Tukey multiple comparison tests. (Input the mean values within the input boxes of the first row and input boxes of the first column. Round your t-
values and critical values to 2 decimal places and other answers to 1 decimal place.)
Transcribed Image Text:Thursday, March 17, 2022 9:50 AM To check pain-relieving medications for potential side effects on blood pressure, it is decided to give equal doses of each of four medications to test subjects. To control for the potential effect of weight, subjects are classified by weight groups. Subjects are approximately the same age and are in general good health. Two subjects in each category are chosen at random from a large group of male prison volunteers. Subjects' blood pressures 15 minutes after the dose are shown below. Research question: Is mean blood pressure affected by body weight and/or by medication type? Systolic Blood Pressure of Subjects (mmHg) Ratio of Subject's Weight to Normal Weight Medication M1 Medication M2 Medication M3 Medication M4 Under 1.1 128 144 140 131 Under 1.1 134 134 133 128 1.1 to 1.3 137 136 133 130 1.1 to 1.3 142 144 145 134 1.3 to 1.5 144 147 147 139 1.3 to 1.5 152 154 149 142 (b) Fill in the missing data. (Round your table of means values to 1 decimal place, SS and Fvalues to 2 decimal places, MS values to 3 decimal places, and p-values to 4 decimal places.) Table of Means Means: Factor 2 (Medication) Factor 1 (Weight) Medication 1 Medication 2 Medication 3 Medication 4 Total 1.1 or Less 1.1 to 1.3 1.3 to 1.5 Total ANOVA TABLE Source S df MS F p-value Factor 1 (Weight) Factor 2 (Medication) Interaction Error Total (d) Perform Tukey multiple comparison tests. (Input the mean values within the input boxes of the first row and input boxes of the first column. Round your t- values and critical values to 2 decimal places and other answers to 1 decimal place.)
Post hoc analysis for Factor 1:
Tukey simultaneous comparison t-values (d.f. = 12)
%3D
1.1 or Less
1.1 to 1.3
1.3 to 1.5
1.1 or Less
1.1 to 1.3
1.3 to 1.5
Critical values for experimentwise error rate:
0.05
0.01
Post hoc analysis for Factor 2:
Tukey simultaneous comparison t-values (d.f. = 12)
%3D
Medication 4
Medication 1
Medication 3
Medication 2
Medication 4
Medication 1
Medication 3
Medication 2
Critical values for experimentwise error rate:
0.05
0.01
Transcribed Image Text:Post hoc analysis for Factor 1: Tukey simultaneous comparison t-values (d.f. = 12) %3D 1.1 or Less 1.1 to 1.3 1.3 to 1.5 1.1 or Less 1.1 to 1.3 1.3 to 1.5 Critical values for experimentwise error rate: 0.05 0.01 Post hoc analysis for Factor 2: Tukey simultaneous comparison t-values (d.f. = 12) %3D Medication 4 Medication 1 Medication 3 Medication 2 Medication 4 Medication 1 Medication 3 Medication 2 Critical values for experimentwise error rate: 0.05 0.01
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