Deck 20: Nonparametric and Resampling Statistical Tests
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Deck 20: Nonparametric and Resampling Statistical Tests
1
In the previous question, the most appropriate test would be
A) the Mann-Whitney test.
B) the Wilcoxon signed-ranks test.
C) Friedman's test.
D) the Kruskal-Wallis test.
A) the Mann-Whitney test.
B) the Wilcoxon signed-ranks test.
C) Friedman's test.
D) the Kruskal-Wallis test.
the Wilcoxon signed-ranks test.
2
With at least some distribution-free tests, a two-tailed test
A) is not appropriate.
B) requires an additional calculation.
C) is more likely to be significant than a one-tailed test.
D) is automatic.
A) is not appropriate.
B) requires an additional calculation.
C) is more likely to be significant than a one-tailed test.
D) is automatic.
requires an additional calculation.
3
A distribution-free test
A) is almost synonymous with a nonparametric test.
B) is a test that makes few assumptions about the distribution from which the data were drawn.
C) usually has less power than a parametric test.
D) all of the above
A) is almost synonymous with a nonparametric test.
B) is a test that makes few assumptions about the distribution from which the data were drawn.
C) usually has less power than a parametric test.
D) all of the above
all of the above
4
When the assumptions behind parametric tests are not met,
A) they are not useful tests.
B) they cannot even be computed.
C) distribution-free tests may have more power.
D) none of the above
A) they are not useful tests.
B) they cannot even be computed.
C) distribution-free tests may have more power.
D) none of the above
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5
When using Wilcoxon's test for paired samples, subjects whose two scores are equal, yielding a difference score of zero, are usually
A) given a random sign.
B) omitted from the data.
C) punished.
D) given a plus sign for one score and a minus sign for another.
A) given a random sign.
B) omitted from the data.
C) punished.
D) given a plus sign for one score and a minus sign for another.
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6
Distribution-free tests are
A) more sensitive to the effects of outliers than parametric tests.
B) more sensitive to the effects of scores near the mean than parametric tests.
C) largely unaffected by the presence of outliers.
D) both a and c
A) more sensitive to the effects of outliers than parametric tests.
B) more sensitive to the effects of scores near the mean than parametric tests.
C) largely unaffected by the presence of outliers.
D) both a and c
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7
Tied scores often present a problem in distribution-free tests. The most common way to deal with them in a Mann-Whitney test is to
A) flip a coin.
B) use a random number table.
C) assign tied ranks.
D) throw out the tied data.
A) flip a coin.
B) use a random number table.
C) assign tied ranks.
D) throw out the tied data.
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8
Assume that we asked 20 subjects to participate in a smoking cessation study. We recorded their craving for a cigarette before and after applying a nicotine patch. One reason we might want to use a distribution-free test is because
A) we have too few subjects for a parametric test.
B) there are some outliers that we don't want to have undue influence on the results.
C) the data are normally distributed.
D) the subjects are all male.
A) we have too few subjects for a parametric test.
B) there are some outliers that we don't want to have undue influence on the results.
C) the data are normally distributed.
D) the subjects are all male.
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9
Wilcoxon's test for paired samples focuses on
A) the mean of the two samples.
B) the sign of the difference scores.
C) the relative magnitude of the difference scores.
D) both b and c
A) the mean of the two samples.
B) the sign of the difference scores.
C) the relative magnitude of the difference scores.
D) both b and c
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10
One of the unusual things about distribution-free tests is that they are often set up so that
A) they only work with equal sample sizes.
B) the null hypothesis is never assumed to be true.
C) we reject the null hypothesis when our test statistic is too small, rather than too large.
D) they are all named after people.
A) they only work with equal sample sizes.
B) the null hypothesis is never assumed to be true.
C) we reject the null hypothesis when our test statistic is too small, rather than too large.
D) they are all named after people.
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11
If the usual assumptions behind parametric tests are met (at least approximately),
A) distribution-free tests are more powerful than parametric tests.
B) distribution-free tests are somewhat less powerful than parametric tests.
C) the tests are indistinguishable.
D) you shouldn't use a parametric test.
A) distribution-free tests are more powerful than parametric tests.
B) distribution-free tests are somewhat less powerful than parametric tests.
C) the tests are indistinguishable.
D) you shouldn't use a parametric test.
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12
In the previous example of the smoking cessation study we might be tempted to apply Friedman's test, because it can handle similar data. This would be a bad idea because
A) Friedman's test really won't handle these data.
B) Friedman's test will not use some of the information inherent in the data.
C) Milton Friedman is a conservative economist, and we only like liberal psychologists.
D) We really should use Friedman's test.
A) Friedman's test really won't handle these data.
B) Friedman's test will not use some of the information inherent in the data.
C) Milton Friedman is a conservative economist, and we only like liberal psychologists.
D) We really should use Friedman's test.
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13
The major advantage of distribution-free tests is that
A) they do not rely on assumptions as severe as those for parametric tests.
B) they have more power.
C) they are substantially easier to run.
D) they are more common.
A) they do not rely on assumptions as severe as those for parametric tests.
B) they have more power.
C) they are substantially easier to run.
D) they are more common.
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14
Each of the distribution-free tests that are covered in the book deal with
A) ranks.
B) means.
C) standard deviations.
D) raw data.
A) ranks.
B) means.
C) standard deviations.
D) raw data.
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15
Distribution-free tests and parametric tests differ in their null hypotheses in that
A) distribution-free tests have a less specific null hypothesis.
B) distribution-free tests make very strong assumptions about the mean.
C) distribution-free tests don't really have a null hypothesis.
D) parametric tests have rather loose null hypotheses.
A) distribution-free tests have a less specific null hypothesis.
B) distribution-free tests make very strong assumptions about the mean.
C) distribution-free tests don't really have a null hypothesis.
D) parametric tests have rather loose null hypotheses.
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16
If the null hypothesis is true and we run the Mann-Whitney test on our data, the expectation is that
A) the difference scores will all be zero.
B) the test will be significant.
C) the sum of the ranks in the two groups will be approximately equal (assuming equal sample sizes).
D) the number of subjects in each group will be about the same.
A) the difference scores will all be zero.
B) the test will be significant.
C) the sum of the ranks in the two groups will be approximately equal (assuming equal sample sizes).
D) the number of subjects in each group will be about the same.
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17
Which of the following is a nonparametric procedure?
A) a , t test.
B) the analysis of variance.
C) the Mann-Whitney test.
D) Pearson's correlation coefficient ( r ).
A) a , t test.
B) the analysis of variance.
C) the Mann-Whitney test.
D) Pearson's correlation coefficient ( r ).
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18
When we speak about rank-randomization tests we are talking about procedures that
A) deal with ranks.
B) ask how ranks would be distributed if the data were random.
C) form the basis of many distribution-free tests.
D) all of the above
A) deal with ranks.
B) ask how ranks would be distributed if the data were random.
C) form the basis of many distribution-free tests.
D) all of the above
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19
When we have relatively large sample sizes, the distribution-free tests for comparing two groups or sets of data discussed in the text have
A) a chi-square approximation.
B) a normal approximation.
C) no solution.
D) problems.
A) a chi-square approximation.
B) a normal approximation.
C) no solution.
D) problems.
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20
Which of the distribution-free tests is roughly equivalent to the t test for two independent means?
A) the Mann-Whitney test
B) Wilcoxon's signed-ranks matched-pairs test
C) Friedman's test
D) the Kruskal-Wallis test
A) the Mann-Whitney test
B) Wilcoxon's signed-ranks matched-pairs test
C) Friedman's test
D) the Kruskal-Wallis test
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21
Distribution free tests are more sensitive to means than to medians.
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22
The ranks of these numbers: 1, 5, 2, 4, 5 are 1, 4.5, 2, 3, 4.5.
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23
The Mann-Whitney test is to independent samples t test as Wilcoxon's matched-pairs signed-ranks test is to
A) Kruskal-Wallis ANOVA.
B) one-way repeated-measures ANOVA.
C) related sample means t-test.
D) Friedman's rank test for k correlated samples.
A) Kruskal-Wallis ANOVA.
B) one-way repeated-measures ANOVA.
C) related sample means t-test.
D) Friedman's rank test for k correlated samples.
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24
As the sample size increases, non-parametric statistics approach normal.
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25
In a Kruskal-Wallis one-way analysis of variance, would you retain or reject the null hypothesis given the following information:
a. H = 15.6, df = 8
b. H = 35.75, df = 25
c. H = 45.7, df = 30
a. H = 15.6, df = 8
b. H = 35.75, df = 25
c. H = 45.7, df = 30
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26
Would you reject or retain the null hypothesis in a Mann-Whitney test given the following information and assuming a one-tailed test and α = .05:
a. n1 = 1, n2 = 25, W = 3
b. n1 = 5, n2 = 6, W = 14
c. n1 = 8, n2 = 9, W = 60
a. n1 = 1, n2 = 25, W = 3
b. n1 = 5, n2 = 6, W = 14
c. n1 = 8, n2 = 9, W = 60
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27
When using Wilcoxon's matched pairs-signed ranks test, the rank of the difference between related scores is calculated.
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28
The Kruskal-Wallis test is based on
A) the t distribution.
B) the z distribution.
C) the χ 2 distribution.
D) the F distribution.
A) the t distribution.
B) the z distribution.
C) the χ 2 distribution.
D) the F distribution.
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29
Friedman's rank test for k-related samples is to Wilcoxon's matched-pairs signed ranks test as a repeated-measures ANOVA is to a paired samples t-test.
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30
Friedman's rank test for k-correlated samples is used to assess the degree of association between ranks, much like a correlation coefficient.
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31
The Mann-Whitney test is used to compare the rank scores of two groups.
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32
Would you reject or retain the null hypothesis in a Wilcoxon's matched-pairs signed rank test given the following information and assuming a one-tailed test and α = .05:
a. n = 5, T = 0
b. n = 12, T = 19
c. n = 28, T = 129
a. n = 5, T = 0
b. n = 12, T = 19
c. n = 28, T = 129
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33
In distribution-free tests, you usually reject the null hypothesis when the obtained value is smaller than the critical value.
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34
Non-parametric tests are those that do not rely on parameter estimation or strong assumptions about distributions.
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35
Distribution-free tests tend to be greatly affected by outliers.
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36
The Kruskal-Wallis test is appropriate when
A) we have several independent groups.
B) we want to compare group medians rather than means.
C) we are worried about outliers.
D) all of the above
A) we have several independent groups.
B) we want to compare group medians rather than means.
C) we are worried about outliers.
D) all of the above
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37
The Friedman test
A) ranks the scores within each subject.
B) is appropriate when we have several repeated measures on each subject.
C) is largely insensitive to outliers.
D) all of the above
A) ranks the scores within each subject.
B) is appropriate when we have several repeated measures on each subject.
C) is largely insensitive to outliers.
D) all of the above
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38
One major argument promoting the use of parametric tests over distribution-free tests is that parametric tests are
A) easier to calculate.
B) usually robust enough to be unaffected by violation of assumptions.
C) less affected by outliers than distribution-free tests.
D) used less frequently and therefore must be more elite.
A) easier to calculate.
B) usually robust enough to be unaffected by violation of assumptions.
C) less affected by outliers than distribution-free tests.
D) used less frequently and therefore must be more elite.
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39
The following depression data using the two-tailed Mann-Whitney test. Describe your conclusions.


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40
Under what conditions would you calculate
in the Mann-Whitney test?

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41
A Pediatrician wants to know if number of children in the family is related to how early parents arrive for regularly scheduled pediatric visits. The data follow in terms of the number of minutes early. Analyze and interpret the data using the Kruskal-Wallis procedure.


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42
A teacher wanted to see if her students could complete a multiplication review sheet more quickly after practicing for a week. The total number of seconds it took each time are reported below. Calculate Wilcoxon's matched pairs signed ranks test on the following data and describe the results.


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43
A critic for the Food Network asked five world-renown chefs to taste three types of olive oil and rate them on a scale from 0 to 100 where 100 represents the highest quality. Analyze and interpret the following data using the Friedman test.


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44
Re-analyze the previous data using the normal approximation.
a. Calculate z and describe your conclusions.
b. Which analysis is more appropriate for these data? Explain.
a. Calculate z and describe your conclusions.
b. Which analysis is more appropriate for these data? Explain.
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45
Re-analyze the previous data using the normal approximation
a. Calculate and interpret z .
b. Which analysis is more appropriate? Explain.
a. Calculate and interpret z .
b. Which analysis is more appropriate? Explain.
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