By HSD ubjects age in years (J) Subjects age in years Years 26-59 Years 60-92 Years 5-25 Years 60-92 Years 9 Years 2 Years 5-25 Years 26-59 Years The mean difference is significant at the 0.05 level ogeneous Subsets HSD WAIS-R full scale IQ Dects age in years N Mean Difference ( 5 Subset for alpha=0.05 1 2 -1.257 -5.254 1.257 -3.997 5.254 3.997 Std Error 1.115 1.293 1.115 1.115 1.293 1.115 Sig 497 <.001 497 001 <.001 .001 95% Confidence Lower Bound Upp -3.87 -8.29 -1.36 -6.61 2.22 1.38

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Multiple Comparisons
Dependent Variable: WAIS-R full scale 10
Tukey HSD
Mean
95% Confidence Interval
Difference
Subjects age in years
J Subjects age in years
Std Error
Sig
Lower Bound Upper Bound
5-25 Years
26-59 Years
-1.257
1.115
A97
-3.87
1.36
60-92 Years
-5.254
1.293
.001
-8.29
-2.22
26-59 Years
5-25 Years
1.257
1.115
497
-1.36
3.87
60-92 Years
3.997
1.115
001
-6.61
1.38
60-92 Years
5-25 Years
5.254
1.293
.001
2.22
8.29
26-59 Years
3.997
1.115
.001
1.38
6.61
* The mean difference is significant at the 0.05 level
Homogeneous Subsets
WAIS-R full scale IQ
Tukey HSD
Subset for alpha= 0.05
Sutjects age in years
5-25 Years
185
107.15
26-59 Years
380
108.40
60-92 Years
Sig
185
112.40
534
1.000
Means for groups in homogeneous subsets are displayed
a. Uses Harmonic Mean Sample Size = 223.175.
b. The group sizes are unequal. The harmonic mean of
the group sies is used. Type l emor levels are not
guaranteed
Transcribed Image Text:Multiple Comparisons Dependent Variable: WAIS-R full scale 10 Tukey HSD Mean 95% Confidence Interval Difference Subjects age in years J Subjects age in years Std Error Sig Lower Bound Upper Bound 5-25 Years 26-59 Years -1.257 1.115 A97 -3.87 1.36 60-92 Years -5.254 1.293 .001 -8.29 -2.22 26-59 Years 5-25 Years 1.257 1.115 497 -1.36 3.87 60-92 Years 3.997 1.115 001 -6.61 1.38 60-92 Years 5-25 Years 5.254 1.293 .001 2.22 8.29 26-59 Years 3.997 1.115 .001 1.38 6.61 * The mean difference is significant at the 0.05 level Homogeneous Subsets WAIS-R full scale IQ Tukey HSD Subset for alpha= 0.05 Sutjects age in years 5-25 Years 185 107.15 26-59 Years 380 108.40 60-92 Years Sig 185 112.40 534 1.000 Means for groups in homogeneous subsets are displayed a. Uses Harmonic Mean Sample Size = 223.175. b. The group sizes are unequal. The harmonic mean of the group sies is used. Type l emor levels are not guaranteed
For Bonferroni, how would you report your results?
A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for middle-age subjects (107.15) and
older subjects (108.40) were not different from one another, but both were significantly lower than the mean
FIQ score for younger subjects (109.08).
A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for younger subjects (108.40) and older
subjects (109.08) were not different from one another, but both were significantly different than the mean FIQ
score for middle-age subjects (112.40).
A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for younger subjects (108.40) and
middle-age subjects (107.15) were not different from one another, but both were significantly different than
the mean FIQ score for older subjects (109.08).
A Bonferroni post hoc test (p < .05) revealed that the mean FIQ score for older subjects (112.40) was
significantly higher than the mean FIQ scores for younger subjects (107.15) and middle-age subjects (108.40),
but the mean FIQ scores of the latter two groups were not different from one another
A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for middle-age (112.40) subjects and
older subjects (109.08) were not different from one another, but both were significantly higher than the mean
FIQ score for younger subjects (107.15).
Transcribed Image Text:For Bonferroni, how would you report your results? A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for middle-age subjects (107.15) and older subjects (108.40) were not different from one another, but both were significantly lower than the mean FIQ score for younger subjects (109.08). A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for younger subjects (108.40) and older subjects (109.08) were not different from one another, but both were significantly different than the mean FIQ score for middle-age subjects (112.40). A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for younger subjects (108.40) and middle-age subjects (107.15) were not different from one another, but both were significantly different than the mean FIQ score for older subjects (109.08). A Bonferroni post hoc test (p < .05) revealed that the mean FIQ score for older subjects (112.40) was significantly higher than the mean FIQ scores for younger subjects (107.15) and middle-age subjects (108.40), but the mean FIQ scores of the latter two groups were not different from one another A Bonferroni post hoc test (p < .05) revealed that the mean FIQ scores for middle-age (112.40) subjects and older subjects (109.08) were not different from one another, but both were significantly higher than the mean FIQ score for younger subjects (107.15).
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