6. Data Mentah Hitung Jenis Basofil Tikus Jantan Rattus norvegicus Galur
Wistar
Tabel Data Hitung Jenis Basofil Jantan Rattus norvegicus Galur Wistar
Ulangan P0
Kontrol P1
25-50 dB P2
55-80 dB P3
85-110 dB
U1 1
2 U2
1 U3
1 1
U4 2
1 1
U5 1
1 1
1 U6
3 1
7. Data Mentah Berat Badan Tikus Jantan Rattus norvegicus Galur Wistar
Tabel Rata-Rata Berat Badan Tikus Jantan Jantan Rattus norvegicus Galur Wistar
U P0
P1 P2
P3 B.Awal
gr B.Akhir
gr B.Awal
gr B.Akhir
gr B.Awal
gr B.Akhir
gr B.Awal
gr B.Akhir
gr
U1 236.3
257.2 130.6
140.9 198.1
199.9 276.5
238.1 U2
248.8 269.1
143.6 155.2
172.9 173.5
408.3 375.3
U3 187.4
204.7 122.6
135.8 202.8
212.4 251.3
220.1 U4
215.3 234.1
136.3 142.7
189.3 187.0
224.8 190.2
U5 224.8
244.0 134.0
144.5 182.9
182.8 307.5
268.2 U6
235.6 255.9
131.8 124.9
180.3 185.1
280.4 241.4
_ X
224.7 244.1
133.1 140.6
187.7 190.1
291.4 255.5
Selisih 19.4
7.5 2.4
-35.9
8. Analisis Data Rata-Rata Jumlah Leukosit Tikus Jantan
Rattus norvegicus Galur Wistar
Tests of Normality
perlakuan Kolmogorov-Smirnov
a
Shapiro-Wilk Statistic
Df Sig.
Statistic df
Sig. jumlah_leukosit
Perlakuan0 .203
6 .200
.900 6
.375 Perlakuan1
.178 6
.200 .912
6 .446
Perlakuan2 .203
6 .200
.889 6
.313 Perlakuan3
.230 6
.200 .951
6 .752
. This is a lower bound of the true significance. a. Lilliefors Significance Correction
Universitas Sumatera Utara
Test of Homogeneity of Variance
Levene Statistic df1
df2 Sig.
jumlah_leukosit Based on Mean
5.273 3
20 .008
Based on Median 4.732
3 20
.012 Based on Median and with
adjusted df 4.732
3 14.664
.017 Based on trimmed mean
5.272 3
20 .008
Hasil: Data Normal tetapi tidak homogeny, maka di transformed. Transformed “natural log”
Tests of Normality
Perlakuan Kolmogorov-Smirnov
a
Shapiro-Wilk Statistic
Df Sig.
Statistic df
Sig. jumlah_leukosit
Perlakuan0 .203
6 .200
.900 6
.375 Perlakuan1
.178 6
.200 .912
6 .446
Perlakuan2 .203
6 .200
.889 6
.313 Perlakuan3
.230 6
.200 .951
6 .752
. This is a lower bound of the true significance. a. Lilliefors Significance Correction
Test of Homogeneity of Variance
Levene Statistic df1
df2 Sig.
jumlah_leukosit Based on Mean
4.678 3
20 .012
Based on Median 3.716
3 20
.028 Based on Median and with
adjusted df 3.716
3 13.634
.038 Based on trimmed mean
4.608 3
20 .013
Hasil: Data tidak homogeny, maka di transformed kembali Transformed “1square root”
Tests of Normality
Perlakuan Kolmogorov-Smirnov
a
Shapiro-Wilk Statistic
Df Sig.
Statistic df
Sig. jumlah_leukosit
Perlakuan0 .203
6 .200
.900 6
.375 Perlakuan1
.178 6
.200 .912
6 .446
Perlakuan2 .203
6 .200
.889 6
.313 Perlakuan3
.230 6
.200 .951
6 .752
. This is a lower bound of the true significance. a. Lilliefors Significance Correction
Test of Homogeneity of Variance
Levene Statistic df1
df2 Sig.
jumlah_leukosit Based on Mean
5.053 3
20 .009
Based on Median 3.554
3 20
.033 Based on Median and with
adjusted df 3.554
3 12.329
.047 Based on trimmed mean
4.939 3
20 .010
Hasil: Data tidak homogeny, maka di transformed kembali
Universitas Sumatera Utara
Transformed “reciprocal”
Tests of Normality
Perlakuan Kolmogorov-Smirnov
a
Shapiro-Wilk Statistic
Df Sig.
Statistic df
Sig. jumlah_leukosit
Perlakuan0 .203
6 .200
.900 6
.375 Perlakuan1
.178 6
.200 .912
6 .446
Perlakuan2 .203
6 .200
.889 6
.313 Perlakuan3
.230 6
.200 .951
6 .752
. This is a lower bound of the true significance. a. Lilliefors Significance Correction