Deck 13: Repeated-Measures Anova
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Deck 13: Repeated-Measures Anova
1
A researcher reports an F?ratio with df = 2, 40 from a repeated?measures ANOVA.How many subjects participated in this experiment?
A)44
B)41
C)63
D)21
A)44
B)41
C)63
D)21
D
2
A researcher obtains an F-ratio with df = 3, 12 from an ANOVA for a repeated-measures research study.How many subjects participated in the research study.
A)4
B)5
C)6
D)13
A)4
B)5
C)6
D)13
B
3
A repeated-measures research study uses n = 8 subjects.If the within-treatment df for the ANOVA is 21, what is the value for the error df?
A)7
B)13
C)14
D)18
A)7
B)13
C)14
D)18
C
4
For a repeated-measures study comparing three treatment conditions with a sample of n = 4 participants, what are the degrees of freedom for the repeated-measures F-ratio?
A)2, 6
B)2, 9
C)2, 11
D)3, 11
A)2, 6
B)2, 9
C)2, 11
D)3, 11
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5
A repeated-measures analysis of variance produces SSwithin treatments = 24 and SSbetween treatments = 40.For this analysis, what is the value of SSerror?
A)16
B)24
C)64
D)cannot be determined from the information provided
A)16
B)24
C)64
D)cannot be determined from the information provided
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6
A researcher reports an F?ratio with df = 2, 40 from a repeated?measures ANOVA.How many treatment conditions were compared in this experiment?
A)2
B)3
C)4
D)41
A)2
B)3
C)4
D)41
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7
In an independent-measures ANOVA, individual differences contribute to the variance in the numerator and in the denominator of the F-ratio.For a repeated-measures ANOVA, what happens to the individual differences in the denominator of the F-ratio.
A)They do not exist because the same individuals participate in all of the treatments.
B)They are measured and subtracted out in the second stage of the analysis.
C)Individual differences contribute to the variance in the denominator.
D)None of the other options accurately describes individual differences in the denominator.
A)They do not exist because the same individuals participate in all of the treatments.
B)They are measured and subtracted out in the second stage of the analysis.
C)Individual differences contribute to the variance in the denominator.
D)None of the other options accurately describes individual differences in the denominator.
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8
A repeated-measures study uses a sample of n = 10 participants to evaluate the mean differences among four treatment conditions.In the analysis of variance for this study, what is the value for dfbetween subjects?
A)9
B)27
C)36
D)39
A)9
B)27
C)36
D)39
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9
A repeated-measures ANOVA with n = 5 subjects has df within-treatment equal to 12.What is the value for dferror for this analysis?
A)8
B)16
C)48
D)insufficient information to find error SS
A)8
B)16
C)48
D)insufficient information to find error SS
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10
The repeated-measures ANOVA is a two-stage process.Which of the following accurately describes what happens during this process.
A)the first stage removes individual differences from the numerator of the F-ratio and the second stage removes individual differences from the denominator.
B)the first stage removes individual differences from the numerator.
C)the second stage removes individual differences from the denominator.
D)none of the above.
A)the first stage removes individual differences from the numerator of the F-ratio and the second stage removes individual differences from the denominator.
B)the first stage removes individual differences from the numerator.
C)the second stage removes individual differences from the denominator.
D)none of the above.
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11
The results from a repeated-measures ANOVA are reported as, F(3, 24) = 3.75, p < .05.For this study, how many treatment conditions were compared?
A)2
B)3
C)4
D)28
A)2
B)3
C)4
D)28
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12
In an independent-measures ANOVA, individual differences contribute to the variance in the numerator and in the denominator of the F-ratio.For a repeated-measures ANOVA, what happens to the individual differences in the numerator of the F-ratio.
A)They do not exist because the same individuals participate in all of the treatments.
B)They are measured and subtracted out in the second stage of the analysis.
C)Individual differences contribute to the variance in the numerator.
D)None of the other options accurately describes individual differences in the numerator.
A)They do not exist because the same individuals participate in all of the treatments.
B)They are measured and subtracted out in the second stage of the analysis.
C)Individual differences contribute to the variance in the numerator.
D)None of the other options accurately describes individual differences in the numerator.
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13
What is the correct denominator for the repeated-measures F-ratio?
A)MSerror
B)MSwithin
C)MSbetween subjects
D)MSbetween treatments
A)MSerror
B)MSwithin
C)MSbetween subjects
D)MSbetween treatments
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14
A repeated-measures analysis of variance produces SStotal = 40 and SSwithin treatments = 10.For this analysis, what is SSbetween treatments?
A)30
B)50
C)400
D)cannot be determined without additional information
A)30
B)50
C)400
D)cannot be determined without additional information
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15
A repeated-measures ANOVA produces SSbetween treatments = 30 and MSbetween treatments = 10.In this analysis, how many treatment conditions are being compared?
A)3
B)4
C)5
D)20
A)3
B)4
C)5
D)20
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16
In a repeated-measures analysis of variance, how does the magnitude of the mean differences from one treatment to another contribute to the F-ratio?
A)The mean differences add to the numerator of the F-ratio
B)The mean differences add to the denominator of the F-ratio
C)The mean differences add to both the numerator and the denominator of the F-ratio
D)The sample mean differences do not influence the F-ratio.
A)The mean differences add to the numerator of the F-ratio
B)The mean differences add to the denominator of the F-ratio
C)The mean differences add to both the numerator and the denominator of the F-ratio
D)The sample mean differences do not influence the F-ratio.
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17
A repeated-measures ANOVA has SSwithin treatments = 26 and SSbetween subjects = 12.For this analysis, what is the value for SSerror?
A)12
B)14
C)26
D)38
A)12
B)14
C)26
D)38
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18
For a repeated-measures study comparing three treatment conditions with a sample of n = 4 participants, the participant totals (the P values) are 3, 6, 9, and 6.What is the value for SSbetween subjects?
A)2
B)3
C)6
D)10
A)2
B)3
C)6
D)10
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19
A repeated-measures study uses a sample of n = 15 participants to evaluate the mean differences among four treatment conditions.In the analysis of variance for this study, what is the value for dfbetween treatments?
A)3
B)4
C)5
D)59
A)3
B)4
C)5
D)59
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20
A researcher uses a repeated-measures ANOVA to test for mean differences among three treatment conditions using a sample of n = 10 participants.What are the df values for the F-ratio from this analysis?
A)3, 9
B)2, 9
C)3, 18
D)2, 18
A)3, 9
B)2, 9
C)3, 18
D)2, 18
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21
The following table shows the results of a repeated-measures analysis of variance comparing three treatment conditions with a sample of n = 10 participants.Note that several values are missing in the table.What is the missing value for the F-ratio? 

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22
For the following data, what are the df values for the repeated-measures F-ratio? 

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23
The results of a repeated-measures ANOVA are reported as follows, F(2, 24) = 1.12, p > .05.How many individuals participated in the study?
A)25
B)13
C)12
D)7
A)25
B)13
C)12
D)7
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24
For the following data, what is SStotal? 

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25
For the following data, SSbetween subjects is equal to 6.What is the SS value for the error term? 

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26
For the following data, what is SSbetween treatments? 

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27
The results of a repeated-measures ANOVA are reported as follows, F(3, 27) = 1.12, p > .05.How many treatments were compared?
A)3
B)4
C)27
D)28
A)3
B)4
C)27
D)28
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28
The following table shows the results of a repeated-measures analysis of variance comparing two treatment conditions with a sample of n = 12 participants.Note that several values are missing in the table.What is the missing value for SStotal? 

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29
For the following data, what is SSbetween subjects? 

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30
In a repeated-measures ANOVA the variability within treatments is divided into two components.What are they?
A)between subjects and error
B)between subjects and between treatments
C)between treatments and error
D)total variability and error
A)between subjects and error
B)between subjects and between treatments
C)between treatments and error
D)total variability and error
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31
For a repeated-measures ANOVA, which of the following is computed differently, compared to an independent-measures ANOVA?
A)total SS
B)between treatment SS
C)within treatment SS
D)the denominator of the F ratio
A)total SS
B)between treatment SS
C)within treatment SS
D)the denominator of the F ratio
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32
A repeated-measures ANOVA produced an F-ration of F = 4.00 with df = 1, 14.If the same data were analyzed with a repeated-measures t test, what value would be obtained for the t statistic?
A)2
B)4
C)16
D)Cannot determine without more information.
A)2
B)4
C)16
D)Cannot determine without more information.
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33
When using the Scheffé post hoc test for a repeated-measures ANOVA, the denominator for the F ratio should be _____.
A)MS error
B)MS between subjects
C)MS within
D)MS between treatment
A)MS error
B)MS between subjects
C)MS within
D)MS between treatment
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34
A researcher is using a repeated-measures design to test for mean differences among four treatment conditions.If the data for this study consist of 10 scores in each treatment, then how many subjects participated in the study?
A)4
B)10
C)40
D)none of the other options is correct
A)4
B)10
C)40
D)none of the other options is correct
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35
A repeated-measures ANOVA produced an F-ration of F = 4.00 with df = 1, 14.If the same data were analyzed with a repeated-measures t test, what would be the df value for the t statistic?
A)1
B)14
C)15
D)Cannot determine without more information.
A)1
B)14
C)15
D)Cannot determine without more information.
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36
For a repeated-measures study comparing three treatment conditions with a sample of n = 4 participants, the participant totals (the P values) are 3, 6, 9, and 6, and the SS values within each treatment are SS1 = 2, SS2 = 2 and SS3 = 6.What is the value for SSerror?
A)2
B)4
C)6
D)10
A)2
B)4
C)6
D)10
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37
A repeated-measures analysis of variance for a study comparing three treatment conditions with a sample of n = 10 participants, produces an F-ratio of F = 5.40.For this result, which of the following is the correct statistical decision?
A)Reject the null hypothesis with = .05 but not with = .01.
B)Reject the null hypothesis with either = .05 or = .01.
C)Fail to reject the null hypothesis with either = .05 or = .01.
D)There is not enough information to determine the correct decision.
A)Reject the null hypothesis with = .05 but not with = .01.
B)Reject the null hypothesis with either = .05 or = .01.
C)Fail to reject the null hypothesis with either = .05 or = .01.
D)There is not enough information to determine the correct decision.
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38
In the first stage of a repeated-measures ANOVA, total degrees of freedom is partitioned into
A)error df and between subjects df
B)within treatments df and between subjects df
C)between treatments df and between subjects df
D)between treatments df and within treatments df
A)error df and between subjects df
B)within treatments df and between subjects df
C)between treatments df and between subjects df
D)between treatments df and within treatments df
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39
The following table shows the results of a repeated-measures ANOVA.Based on this table, what is the value for 2, the percentage of variance accounted for by the treatments? 
A)
B)
C)
D)

A)
B)
C)
D)
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40
A repeated-measures experiment compares three treatment conditions with a sample of n = 10 participants.If the data are analyzed with ANOVA, the analysis would have dftotal = _____.
A)27
B)28
C)29
D)30
A)27
B)28
C)29
D)30
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41
For a repeated-measures design, the differences between treatments may be caused by a treatment effect or by sampling error (random factors), but they cannot be caused by individual differences.
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42
For the repeated?measures analysis, the F-ratio, on average, is expected to be zero when H0 is true.
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43
The F-ratio for a repeated-measures ANOVA has df = 1, 15.The research study used a total of n = 16 participants.
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44
Based on the results of a repeated-measures ANOVA, a researcher reports F(4, 20) = 2.57,
p > .05.For this ANOVA, the null hypothesis was rejected.
p > .05.For this ANOVA, the null hypothesis was rejected.
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45
A repeated-measures study comparing three treatment conditions with a sample of n = 10 participants would produce an F-ratio with df = 2, 18.
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46
For the repeated ANOVA, SSwithin treatments = SSbetween subjects + SSerror.
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47
For a repeated-measures study, if there are no systematic treatment effects (H0 is true), then the numerator and denominator of the F-ratio are both measuring the same sources of variance.
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48
A repeated-measures study uses a sample of n = 8 participants to evaluate the mean differences between two treatment conditions.The analysis of variance for this study will have dferror = 7.
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49
One major difference between the independent?measures ANOVA and the repeated?measures analysis is that SStotal is calculated differently for each type of ANOVA.
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50
A repeated-measures study uses a sample of n = 10 participants to evaluate the mean differences among three treatment conditions.The F-ratio for the repeated-measures ANOVA will have df = 2, 18.
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51
In a repeated-measures ANOVA, individual differences are measured by SSbetween subjects.
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52
The analysis of total variability into between-treatments and within-treatments variability is the same for a repeated-measures ANOVA and an independent-measures ANOVA.
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53
The result of a repeated-measures ANOVA stated that F(3, 21) = 4.57, p < .05.The study used a sample of n = 7 participants.
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54
Because the repeated-measures ANOVA removes variance caused by individual differences, it usually is more likely to detect a treatment effect than the independent-measures ANOVA is.
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55
In the second stage of analysis for the repeated-measures ANOVA, individual differences are removed from the denominator of the F-ratio.
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56
The F-ratio for a repeated-measures ANOVA has df = 2, 16.The research study compared 3 treatments with a sample of n = 8 participants.
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57
A researcher reports the results of an ANOVA for a repeated-measures study as "F(2, 12) = 7.84, p < .01." This study used a sample of n = 13 participants.
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58
The denominator of the repeated-measures F-ratio is intended to measure differences that exist without any systematic treatment effect or any systematic individual differences.
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59
In a repeated-measures ANOVA the variability caused by systematic individual differences must be measured and subtracted out of the between-treatments variability in the numerator of the F-ratio.
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60
A repeated-measures study uses a sample of n = 10 participants to evaluate the mean differences among three treatment conditions.For this study, dfbetween subjects = 18.
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61
The first stage of a repeated-measures ANOVA is identical to the analysis in an independent-measures ANOVA.
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62
For a repeated-measures study, dfbetween treatments= 3 and dftotal = 27.This means that there were n = 7 participants in the study.
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63
For a repeated-measures ANOVA, n = 5, k = 4, and error SS= 24.Therefore, MSerror = 2.
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64
A repeated-measures ANVOA produces SSbetween treatments = 30 and SStotal = 60.For this study, the percentage of variance accounted for by the treatments is η2 = 30/60 = 0.50.
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65
A repeated-measures t test produces a t statistic of t = 4.00 with df = 12.If the same data were evaluated with a repeated-measures ANOVA, the F-ratio would have df = 2, 12.
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66
A repeated-measures study compares three treatments with a sample of n = 12 subjects.For the analysis of variance, dferror = 33.
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67
For a repeated-measures ANOVA if SSbetween subjects = 40 and SSwithin treatments = 70, then
SSerror = 30.
SSerror = 30.
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68
The repeated-measures ANOVA begins the same way as the independent-measures ANOVA with the total variability partitioned into between-treatment and within-treatment components.
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69
A repeated-measures t test produces a t statistic of t = 4.00 with df = 12.If the same data were evaluated with a repeated-measures ANOVA, the F-ratio would be F = 16.
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70
A repeated-measures study has n = 8 subjects and k = 3 treatments.For this study, dferror= 21.
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