he data and the source table below are from a Repeated-Measures ANOVA. Using this information, Calculate the HSD value for a Tukey’s HSD test – including looking up the value of q from the table. Use α = .01. Condition 1 Condition 2 Condition 3 50 52 55 48 48 50 50 54 53 52 51 54 SOURCE SS df MS Fobt Between 18.17 2 9.08 5.19 Within 40.75 9 Participants 30.25 3 Error 10.50 6 1.75 Total 58.92 11 Group of answer choices q = 4.34, HSD = 3.05 q = 4.34, HSD = 2.87 q = 6.33, HSD = 4.19 q = 6.33, HSD = 4.44
he data and the source table below are from a Repeated-Measures ANOVA. Using this information, Calculate the HSD value for a Tukey’s HSD test – including looking up the value of q from the table. Use α = .01. Condition 1 Condition 2 Condition 3 50 52 55 48 48 50 50 54 53 52 51 54 SOURCE SS df MS Fobt Between 18.17 2 9.08 5.19 Within 40.75 9 Participants 30.25 3 Error 10.50 6 1.75 Total 58.92 11 Group of answer choices q = 4.34, HSD = 3.05 q = 4.34, HSD = 2.87 q = 6.33, HSD = 4.19 q = 6.33, HSD = 4.44
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Question
The data and the source table below are from a Repeated-Measures ANOVA. Using this information, Calculate the HSD value for a Tukey’s HSD test – including looking up the value of q from the table.
Use α = .01.
Condition 1 |
Condition 2 |
Condition 3 |
50 |
52 |
55 |
48 |
48 |
50 |
50 |
54 |
53 |
52 |
51 |
54 |
SOURCE |
SS |
df |
MS |
Fobt |
Between |
18.17 |
2 |
9.08 |
5.19 |
Within |
40.75 |
9 |
|
|
Participants |
30.25 |
3 |
|
|
Error |
10.50 |
6 |
1.75 |
|
Total |
58.92 |
11 |
|
|
Group of answer choices
q = 4.34, HSD = 3.05
q = 4.34, HSD = 2.87
q = 6.33, HSD = 4.19
q = 6.33, HSD = 4.44
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