TOK Control vs Wt
Control
Descriptives
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Time
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N
|
Mean
|
Std. Deviation
|
Std. Error
|
95% Confidence Interval for Mean
|
Minimum
|
Maximum
|
||
Lower Bound
|
Upper Bound
|
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wt control
|
6
|
.6587
|
.43355
|
.17699
|
.2037
|
1.1136
|
.12
|
1.20
|
tok control
|
6
|
.4968
|
.37679
|
.15382
|
.1014
|
.8923
|
.11
|
1.07
|
Total
|
12
|
.5778
|
.39637
|
.11442
|
.3259
|
.8296
|
.11
|
1.20
|
ANOVA
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Time
|
|||||
Sum of Squares
|
df
|
Mean Square
|
F
|
Sig.
|
|
Between Groups
|
.079
|
1
|
.079
|
.476
|
.506
|
Within Groups
|
1.650
|
10
|
.165
|
||
Total
|
1.728
|
11
|
Here, p= 0.50 i.e. greater than 0.05, therefore, no
difference is present between TOK Control and Wt Control.
TOK and WT Drug Vs
TOK and WT Control
ANOVA
|
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Time2
|
|||||
Sum of Squares
|
df
|
Mean Square
|
F
|
Sig.
|
|
Between Groups
|
.992
|
3
|
.331
|
3.216
|
.045
|
Within Groups
|
2.057
|
20
|
.103
|
||
Total
|
3.049
|
23
|
Since p = 0.045, i.e. less than 0.05, thus a statistical
significant difference is present between the groups. However, it is not known which of the
particular groups differed. This can be easily found out using Multiple Comparisons table
comprising the results of post-hoc tests.
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