An investor is looking at past trends för three plans comparing dividends paid per share. She collects sample data from each plan to compare the average dividends paid per share. Let a = 0.05. Plan 1 Plan 2 Plan 3 1.28 1.05 0.45 1.65 1.19 1.15 1.86 1.20 0.15 2.05 3.17 1.00 0.70 1.46 0.40 2.73 0.60 0.61 2.13 1.36 1.09 Groups Count Average Variance Plan 1 7 1.771429 0.422848 Plan 2 7 1.432857 0.662857 Plan 3 7 0.692857 0.151224 Sum of Squares df Mean Squares F crit Source of Variation F Between Groups 4.2596 2 2.1298 5.1655 0.0169 3.5546 Within Groups 7.4216 18 0.4123 Total 11.6812 20 (a) What is the next step in the one-way ANOVA? Continue to the Tukey-Kramer post hoc test, as the results were significant. Stop, the results were not significant. The Tukey-Kramer post hoc test is not needed. Stop, the results were significant. The Tukey-Kramer post hoc test is not needed. There is not enough information, so collect more data. MSE 1 1 (b) The Tukey-Kramer method uses the formula (x; - x) V Using the formula, what is the value of g from the table for this scenario? (Use a table. Round your answer to two decimal places.) MSE (c) The Tukey-Kramer method uses the formula (x, - x) + 9 2 + Using the formula, how many intervals need to be calculated for this scenario?

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An investor is looking at past trends for three plans comparing dividends paid per share. She collects sample data from each plan to compare the average
dividends paid per share. Let a = 0.05.
Plan 1 Plan 2
Plan 3
1.28
1.05
0.45
1.65
1.19
1.15
1.86
1.20
0.15
2.05
3.17
1.00
0.70
1.46
0.40
2.73
0.60
0.61
2.13
1.36
1.09
Groups
Count
Average
Variance
Plan 1
7
1.771429
0.422848
Plan 2
7
1.432857
0.662857
Plan 3
7
0.692857
0.151224
Source of Variation
Sum of Squares
df
Mean Squares
P
F crit
Between Groups
4.2596
2
2.1298
5.1655
0.0169
3.5546
Within Groups
7.4216
18
0.4123
Total
11.6812
20
(a) What is the next step in the one-way ANOVA?
Continue to the Tukey-Kramer post hoc test, as the results were significant.
Stop, the results were not significant. The Tukey-Kramer post hoc test is not needed.
Stop, the results were significant. The Tukey-Kramer post hoc test is not needed.
There is not enough information, so collect more data.
1
+
MSE
(b) The Tukey-Kramer method uses the formula (x; - x) +
Using the formula, what is the value of g from the table for this scenario? (Use
a table. Round your answer to two decimal places.)
1
1
+
MSE
(c) The Tukey-Kramer method uses the formula (x; - x) + 9
2
Using the formula, how many intervals need to be calculated for this scenario?
Transcribed Image Text:An investor is looking at past trends for three plans comparing dividends paid per share. She collects sample data from each plan to compare the average dividends paid per share. Let a = 0.05. Plan 1 Plan 2 Plan 3 1.28 1.05 0.45 1.65 1.19 1.15 1.86 1.20 0.15 2.05 3.17 1.00 0.70 1.46 0.40 2.73 0.60 0.61 2.13 1.36 1.09 Groups Count Average Variance Plan 1 7 1.771429 0.422848 Plan 2 7 1.432857 0.662857 Plan 3 7 0.692857 0.151224 Source of Variation Sum of Squares df Mean Squares P F crit Between Groups 4.2596 2 2.1298 5.1655 0.0169 3.5546 Within Groups 7.4216 18 0.4123 Total 11.6812 20 (a) What is the next step in the one-way ANOVA? Continue to the Tukey-Kramer post hoc test, as the results were significant. Stop, the results were not significant. The Tukey-Kramer post hoc test is not needed. Stop, the results were significant. The Tukey-Kramer post hoc test is not needed. There is not enough information, so collect more data. 1 + MSE (b) The Tukey-Kramer method uses the formula (x; - x) + Using the formula, what is the value of g from the table for this scenario? (Use a table. Round your answer to two decimal places.) 1 1 + MSE (c) The Tukey-Kramer method uses the formula (x; - x) + 9 2 Using the formula, how many intervals need to be calculated for this scenario?
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