Jenis Perlakuan Umur Minggu (ST)1 2 3 4 5 6 7 8

  74 LAMPIRAN

1. Pertambahan tinggi tanaman kacang hijau (Vigna radiata) Jenis Perlakuan Minggu ke-

  2

  29

  20.6

  17

  12.8

  3.5

  31.5 P15(2x)c

  30

  30

  20.4

  40.6

  17.5

  15.5

  8.5

  28.3 P15(2x)b

  27.3

  26.3

  25.5

  34

  41.7

  20

  13.3

  32.5 P15(3x)c

  31

  30.5

  27.2

  24.5

  23

  19.5

  42.8 P15(3x)b

  43.5 P15(3x)a

  42

  41.4

  32.5

  25.5

  19.5

  16.1

  9

  20.5

  17.8

  23

  27.1

  24.5

  21

  18.7

  10.5

  35.7 P15(1x)a

  37

  35.5

  24

  28

  18.5

  16.1

  8.5

  32 P10(3x)c

  32.5

  31.6

  24.2

  27.5

  28

  10.6

  9.4

  29 P15(2x)a

  29

  29

  30

  22.2

  19

  15.7

  28.5 P15(1x)c

  28.5 P15(1x)b

  29.5

  28.6

  20

  18.9

  18

  16.2

  9.9

  10.8

  24.2

  22

  26.5

  14.4

  14

  11

  4.5

  26.9 NPK(3x)a

  28.5

  28.5

  23.2

  21.5

  20

  17.2

  6.9

  31.5 NPK(2x)c

  31

  29.5

  26

  17

  23.5

  18.5

  9.7

  27.5 ADLN Perpustakaan Universitas Airlangga

  29.5

  29.5

  22.3

  21

  16.5

  18

  26.8 NPK(3x)c

  26.5 NPK(3x)b

  26.5

  25.6

  25.5

  11.8

  14.1

  11.4

  3

  22.1

  15.2

  29.9

  24

  13

  12

  9.5

  8.2

  27 NPK(1x)b

  28

  26

  20.1

  24.3

  19.5

  15.6

  9

  48 NPK(1x)a

  46

  38.5

  35.5

  17.2

  24.5

  5.4

  8

  31 NPK(2x)b

  30.5

  30.3

  27

  18.8

  17.1

  15.5

  31.3 NPK(2x)a

  24.5 NPK(1x)c

  30

  30

  25

  20.4

  18.9

  16.2

  7.4

  24.3

  19.3

  3

  25.1

  19

  18.5

  10.1

  37.2 P5(2x)a

  36.3

  39

  30.7

  21.5

  27.5

  18.7

  9.6

  27 P5(1x)c

  22.9

  18.3

  17

  13.1

  21.1

  30.5

  11.7

  28 P5(2x)c

  34

  32.2

  26.3

  24.1

  22

  18.8

  10.4

  21.5

  32

  19.5

  15.6

  15.2

  15.1

  14.7

  8.5

  28.5 P5(2x)b

  13.1

  5

  8.9

  24.2

  17

  16.7

  10.7

  31 P0b

  31

  30.4

  30

  24

  21.6

  20.2

  12.6

  8 P0a

  7

  6

  5

  4

  18.1

  24.8

  30 P5(1x)b

  26.3 P5(1x)a

  29.5

  29.2

  20

  19.5

  18.2

  17.8

  11.8

  28

  27.1

  24.7

  24.3

  21.6

  19.5

  16.8

  8.6

  27.3 P0c

  34.2 P5(3x)a

  17.9

  1

  27.9

  21.2

  20

  17.5

  10.1

  30 P10(2x)b

  31

  29.6

  23.5

  28.7

  19.6

  18.9

  11.3

  26 P10(2x)a

  26.7

  25.1

  25.8

  24.5

  30.5

  20.2

  11.1

  27.7 P10(3x)b

  27.5

  25

  21.2

  20.3

  18.5

  17.8

  21.8 P10(3x)a

  30 P10(2x)c

  23

  19

  19

  14

  14

  13.2

  6.2

  23.1

  16.9

  20

  20.5

  16.5

  14.1

  6.9

  43.3 P5(3x)c

  34

  31

  27

  17.6

  24.1

  15

  9

  28.5 P5(3x)b

  31

  30.6

  27.1

  20.5

  21.2

  31.6

  8

  4.5

  21.5 P10(1x)c

  21

  21

  21

  16.5

  15.1

  13

  34 P10(1x)b

  33

  34

  34.2

  29

  26

  22.1

  19.8

  10.5

  32.5 P10(1x)a

  10.9

  75

2. Pertambahan jumlah cabang tanaman kacang hijau (V. radiata) Jenis Perlakuan Umur Minggu (ST)

  2

  5

  5

  2

  1

  1

  7 P15(2x)c

  5

  8

  4

  10

  2

  1

  1

  7 P15(2x)b

  8

  6

  5

  5

  8

  2

  1

  7 P15(3x)c

  7

  8

  5

  4

  2

  2

  7 P15(3x)b

  6 P15(3x)a

  8

  9

  9

  5

  2

  1

  1

  4

  1

  2

  5

  4

  2

  2

  1

  7 P15(1x)a

  8

  8

  4

  7

  2

  1

  1

  6 P10(3x)c

  7

  9

  5

  7

  7

  1

  1

  6 P15(2x)a

  6

  7

  4

  4

  2

  1

  6 P15(1x)c

  6 P15(1x)b

  6

  7

  4

  3

  2

  1

  1

  1

  2

  2

  5

  3

  2

  1

  1

  2 NPK(3x)a

  8

  6

  3

  6

  2

  1

  1

  7 NPK(2x)c

  8

  9

  7

  4

  5

  2

  1

  5 ADLN Perpustakaan Universitas Airlangga

  7

  7

  5

  3

  2

  1

  9 NPK(3x)c

  6 NPK(3x)b

  9

  7

  4

  3

  2

  1

  1

  4

  1

  4

  3

  2

  1

  1

  1

  9 NPK(1x)b

  9

  7

  2

  4

  2

  1

  1

  10 NPK(1x)a

  8

  10

  5

  3

  7

  1

  1

  7 NPK(2x)b

  7

  6

  4

  3

  2

  1

  7 NPK(2x)a

  9 NPK(1x)c

  7

  9

  6

  4

  2

  1

  1

  4

  1

  

3

  4

  2

  1

  1

  6 P5(2x)a

  9

  9

  5

  2

  3

  1

  1

  8 P5(1x)c

  6

  7

  3

  2

  3

  6

  1

  6 P5(2x)c

  7

  8

  6

  3

  2

  1

  1

  5

  6

  4

  3

  2

  2

  1

  1

  5 P5(2x)b

  2

  1

  1

  4

  2

  1

  1

  7 P0b

  5

  7

  5

  2

  4

  1

  1

  8 P0a

  7

  6

  5

  4

  3

  6

  9 P5(1x)b

  5 P5(1x)a

  9

  9

  6

  3

  2

  1

  1

  6

  7

  6

  4

  3

  2

  1

  1

  8 P0c

  7 P5(3x)a

  1

  1

  5

  3

  2

  1

  1

  8 P10(2x)b

  8

  9

  4

  6

  2

  1

  1

  8 P10(2x)a

  7

  7

  4

  4

  8

  2

  1

  7 P10(3x)b

  8

  7

  3

  3

  2

  1

  5 P10(3x)a

  8 P10(2x)c

  5

  4

  4

  2

  2

  1

  1

  3

  1

  2

  3

  2

  1

  1

  8 P5(3x)c

  8

  7

  5

  2

  5

  1

  1

  6 P5(3x)b

  6

  7

  5

  3

  3

  7

  1

  1

  7 P10(1x)c

  8

  7

  4

  3

  2

  1

  8 P10(1x)b

  9

  8

  6

  4

  3

  2

  1

  1

  8 P10(1x)a

  1

  76

3. Pertambahan jumlah bunga tanaman kacang hijau (V. radiata)

  5

  1 P15(2x)a

  3 P15(3x)b

  4

  9

  4 P15(3x)a

  4

  1 P15(2x)c

  2

  3

  2

  3 P15(2x)b

  2

  4

  1

  2

  2

  1

  1 P15(1x)c

  1

  3

  3

  1 P15(1x)b

  1

  3

  2

  1 P15(1x)a

  2

  3

  2 P15(3x)c

  2

  2 NPK(2x)c

  1 ADLN Perpustakaan Universitas Airlangga

  1

  3

  1 NPK(3x)c

  2

  2

  2 NPK(3x)b

  2

  3

  3 NPK(3x)a

  2

  3

  2

  4

  5

  3

  2 NPK(2x)b

  1

  2

  1 NPK(2x)a

  5

  4 NPK(1x)c

  6

  2 NPK(1x)b

  4

  2 NPK(1x)a

  3

  4

  2 P10(3x)c

  6

  3 P5(2x)a

  3

  3

  3

  1 P5(3x)a

  2

  3

  4 P5(2x)c

  1

  1

  1 P5(2x)b

  2

  2

  2

  3

  1 P5(1x)b

  3

  2

  2 P5(1x)a

  1 P0c

  2

  2

  2 P0b

  2

  2

  3

  8 P0a

  7

  2 P5(3x)b

  3 P5(3x)c

  Jenis Perlakuan Umur Minggu (ST)

  3

  3

  3

  1 P10(3x)b

  3

  2

  1 P10(3x)a

  3

  1 P10(2x)c

  2

  2

  1 P10(2x)b

  1

  2

  3

  1 P10(2x)a

  3

  2

  2 P10(1x)c

  5

  3

  1

  4 P10(1x)b

  5

  3

  1 P10(1x)a

  3

  3

  3

  77

4. Hasil pengamatan variabel pertumbuhan dan produksi umur 8 minggu ST

  0.72

  5

  0.49

  2.93

  7

  41.7

  0.49

  1.46

  2.93 P15(2x)c

  13

  0.35

  2.06

  2

  19.5

  0.35

  1.5

  3.35 P15(3x)a

  2.9

  0.13

  0.23

  16

  5.79 P15(3x)c

  0.23

  5.07

  10

  14.2

  1.42

  0.86

  1

  6.88 P15(3x)b

  0.86

  5.29

  11

  28

  1.25 P15(2x)b

  1.0

  0.49

  14.9

  1.38

  3

  3.52 P15(1x)b

  0.09

  2.54

  7

  0.09

  13.9

  1.86

  3

  5.03 P15(1x)a

  0.10

  3.6

  16

  0.15

  8

  7

  1.4

  20.3

  0.13

  0.91

  1

  1.8 P15(2x)a

  0.13

  10

  2.35

  16.2

  0.13

  2.07

  3

  3.15 P15(1x)c

  0.15

  5.19

  22.5

  0.10

  1.04

  1

  14

  0.08

  1.46

  1.81 NPK(3x)a

  0.10

  6

  0.08

  13.5

  0.10

  1.25

  46 NPK(2x)c

  0.26

  3.82

  0.94

  1.47 NPK(3x)b

  28

  0.61

  1.85 ADLN Perpustakaan Universitas Airlangga

  0.07

  1.36

  6

  21.5

  0.07

  1.53 NPK(3x)c

  1

  0.15

  1.17

  3

  16.5

  0.15

  0.78

  16

  0.26

  9

  3.54

  5

  24.5

  0.46

  1.11

  4.87 NPK(1x)b

  0.14

  10

  0.46

  18.8

  0.14

  1.63

  7.39 NPK(1x)a

  0.49

  5.86

  3.07

  4.22 NPK(1x)c

  1.85

  0.19

  1

  0.94 NPK(2x)b

  0.19

  0.55

  6

  16.9

  1.95

  1.67

  4.78 NPK(2x)a

  0.16

  1.87

  9

  20.3

  0.16

  14.5

  1.55

  0.26

  1.07

  0.92 P5(2x)b

  0.09

  0.62

  6

  19.8

  0.09

  4.71 P5(2x)a

  0.20

  0.67

  3.34

  11

  23.9

  0.67

  1.99

  2.1

  10.5

  5.38 P5(1x)c

  2.0

  30.5

  0.18

  1.65

  6

  3.11 P5(3x)a

  0.16

  12

  6

  14.5

  0.16

  0.84

  4.3 P5(2x)c

  0.20

  2.63

  2

  0.16

  5.02

  0.14

  1.73

  1.1 P0c

  0.14

  0.81

  3

  22.5

  1.11

  11

  1

  3.7 P0b

  0.26

  3.69

  8

  18

  0.09

  7

  3.34

  3.41

  6

  22.3

  0.16

  0.85

  5.75 P5(1x)b

  0.25

  14

  1.82

  19.3

  0.25

  2.47

  1

  2.5 P5(1x)a

  0.09

  20

  0.18

  Jenis Perlakuan Pertumbuhan Produktivitas Jumlah Bintil Berat Kering Tanaman Berat Kering Akar Panjang Akar Jumlah Polong Berat Biji Keseluruhan Berat Kering 100 Biji Berat Polong P0a

  14

  0.09

  0.47

  2.32 P10(2x)c

  0.08

  2.24

  6

  0.08

  0.09 P10(3x)a

  0.96

  2

  2.98 P10(2x)b

  0.12

  1.9

  9

  13.5

  1

  0.12

  1.15

  3.22 P10(3x)c

  0.17

  1.76

  10

  17.1

  0.17

  5

  1.79

  1.75 P10(3x)b

  0.14

  0.9

  15

  28

  0.14

  13.5

  1.82

  3.53 P5(3x)b

  4.13 P5(3x)c

  0.21

  2.4

  7

  13.1

  0.21

  1.11

  1.19

  2 1.8 0,17

  3.75

  7

  21

  1.19

  7.8

  4

  3.58 P10(1x)a

  11.7

  0.67 P10(2x)a

  2.75

  18.50

  0.49

  2

  20

  3.14 P10(1x)c 1.95 0,18

  0.21

  9

  8

  18.5

  0.21

  0.21

  8

  1.83 P10(1x)b

  11.70

  2.01

  1

  78

  

5. Hasil analisis statistik pertumbuhan dan produksi tanaman kacang hijau

(V.radiata) Hasil analisis statistik parameter pertumbuhan dan produksi menggunakan program SPSS versi 17.

One-Sample Kolmogorov-Smirnov Test

  TINGGI BK_TANAMAN PANJANG_AKAR BK_AKAR JML_POLONG BRT_BIJI_TOTAL BRT_100BIJI JML_CABANG JML_BUNGA BERAT_POLONG jml_bintil N 39 39 39 39

39

39 39 39 39 39 Parameters 39 Normal a,,b Mean 30.7205 1.6959 19.0359 .2408 8.0769 2.4672 10.9338 6.9231 1.5128 4.2867 2.0513 Std. Deviation 5.74604 1.29457 6.26311 .22910 4.25741 1.40225 3.27510 1.47585 1.12090 7.07394 3.53143 Most Extreme Differences Absolute .173 .275 .112 .287 .133 .076 .226 .162 .266 .339 .284 Positive .173 .275 .112 .287 .121 .076 .148 .146 .266 .339 .284 Negative -.129 -.150 -.095 -.228 -.133 -.068 -.226 -.162 -.170 -.279 -.281

Kolmogorov-Smirnov Z 1.082 1.717 .702 1.793 .833 .473 1.411 1.011 1.662 2.117 1.772

Asymp. Sig. (2-tailed) .192 .006 .709 .003 .492 .979 .037 .259 .008 .000 .004

a. Test distribution is Normal. b. Calculated from data.

  Homogenity test

Test of Homogeneity of Variances

Levene Statistic df1 df2 Sig.

  TINGGI 2.427

  12 26 .083 BK_TANAMAN 6.725 12 26 .000 PANJANG_AKAR 2.753 12 26 .015 BK_AKAR 6.607 12 26 .000 JML_POLONG 2.524 12 26 .023 BRT_BIJI_TOTAL 1.360 12 26 .246 BRT_100BIJI 4.209 12 26 .001 JML_CABANG 3.321 12 26 .005 JML_BUNGA 3.197 12 26 .006 BERAT_POLONG 14.279 12 26 .000 jml_bintil 7.078 12 26 .000

  

Parameter dengan data distribusi normal dan homogen diuji dengan anava satu arah

ANOVA

Sum of Squares df Mean Square F Sig.

  ADLN Perpustakaan Universitas Airlangga

  79

  TINGGI Between Groups 599.437 12 49.953 1.982 .089 Within Groups 655.207 26 25.200

Total 1254.644 38

PANJANG_AKAR Between Groups 497.336 12 41.445 1.085 .411 Within Groups 993.273 26 38.203

Total 1490.610 38

  JML_CABANG Between Groups 26.769 12 2.231 1.036 .448 Within Groups 56.000 26 2.154 Parameter dengan data terdistribusi normal dan tidak homogen di uji dengan pendekatan Brown-Forsythe

  Robust Tests of Equality of Means b Statistic a df1 df2 Sig.

  TINGGI Brown-Forsythe 1.982 12 14.395 .109 PANJANG_AKAR Brown-Forsythe 1.085 12 11.893 .446 JML_POLONG Brown-Forsythe 1.647 12 13.522 .189 JML_CABANG Brown-Forsythe . . . .

  a. Asymptotically F distributed.

  

b. Robust tests of equality of means cannot be performed for JML_CABANG because at least one group has 0 variance.

  

ADLN Perpustakaan Universitas Airlangga

  

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  80 Parameter dengan data tidak terdistribusi normal dan tidak homogen di uji dengan non-parametrik pendekatan Kruskall-Wallis a,b

  Test Statistics BK_TANAMAN BK_AKAR BRT_100BIJI JML_BUNGA BERAT_POLONG jml_bintil Chi-Square 11.055 21.870 9.904 6.556 21.851 19.549 df

  12

  12

  12

  12

  12

  12 Asymp. Sig. .524 .039 .624 .885 .039 .076

  a. Kruskal Wallis Test

  b. Grouping Variable: PERLAKUAN Parameter jumlah cabang pada Brown-Forsythe tidak memehui syarat variansi data diuji dengan Kruskal-Wallis a,b

  Test Statistics JML_CABANG Chi-Square

  12.456 df

  12 Asymp. Sig. .410

  a. Kruskal Wallis Test

  b. Grouping Variable: PERLAKUAN Parameter tinggi tanaman kacang hijau berpengaruh pada uji anava sehingga dilakukan uji lanjutan menggunakan Duncan a TINGGI_TANAMAN

  Duncan Subset for alpha = 0.10 PERLAKUAN N

  1

  2 P10(1X) 3 1.4263 NPK(3X) 3 1.4302 P10(2X) 3 1.4309 NPK(1X) 3 1.4387 P0 3 1.4492 P15(1X) 3 1.4574 NPK(2X) 3 1.4731 P5(2X) 3 1.4787 P5(1X) 3 1.4930 P10(3X) 3 1.5001 P15(2X) 3 1.5295 1.5295 P5(3X) 3 1.5344 1.5344 P15(3X) 3 1.6082 Sig.

  .104 .185 Means for groups in homogeneous subsets are displayed.

a. Uses Harmonic Mean Sample Size = 3.000.

  Parameter berat biji total tanaman kacang hijau berpengaruh pada uji anava sehingga dilakukan uji lanjutan menggunakan Duncan

  

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  81 a BRT_BIJI_TOTAL

  Duncan Subset for alpha = 0.10 PERLAKUAN N

  1

  2

  3

  4 NPK(3X) 3 1.1567 P10(2X) 3 1.3800 P5(2X) 3 1.7500 1.7500 P15(2X) 3 1.9967 1.9967 P10(3X) 3 2.0867 2.0867 2.0867 P15(1X) 3 2.0967 2.0967 2.0967 P0 3 2.1067 2.1067 2.1067 NPK(2X) 3 2.4300 2.4300 2.4300 NPK(1X) 3 2.8267 2.8267 2.8267 P5(1X) 3 3.3633 3.3633 P5(3X) 3 3.7233 P15(3X)

  3 5.4067 Sig. .101 .110 .100 1.000

  Means for groups in homogeneous subsets are displayed.

a. Uses Harmonic Mean Sample Size = 3.000.

  

Uji lanjutan menggunakan pendekatan Mann-Whitney signifikansi level 0,10%

 Parameter biomassa akar

  1

  2

  3

  4

  5

  

6

  7

  8

  9

  10

  11

  12

  13

  1 TS TS TS TS TS TS TS TS TS TS TS TS

  2 TS TS TS TS S TS S TS TS TS TS S

  3 TS TS TS TS TS TS TS TS S TS TS TS

  4 TS TS TS TS S S S TS TS TS TS S

  5 TS TS TS TS S S S TS S TS TS S

  6 TS S TS S S TS TS S S S TS TS

  7 TS TS TS S S TS TS TS S TS TS TS

  8 TS S TS S S TS TS TS S TS TS TS

  9 TS TS TS TS TS S TS TS TS TS TS TS

  10 TS TS S TS S S S S TS TS TS S

  11 TS TS TS TS TS S TS TS TS TS TS TS

  12 TS TS TS TS TS TS TS TS TS TS TS TS

  

13 TS S TS S S TS TS TS TS S TS TS

  82  Parameter berat polong

  1 TS TS TS TS TS TS S TS S TS TS TS

  4

  5

  

6

  7

  8

  9

  10

  11

  12

  13

  2 TS TS TS TS TS TS S TS TS TS TS TS

  2

  3 TS TS TS TS TS S S TS S TS TS TS

  4 TS TS TS TS TS TS TS TS TS TS TS TS

  5 TS TS TS TS TS TS TS TS TS TS TS TS

  6 TS TS TS TS TS TS S TS TS TS TS TS

  7 TS TS S TS TS TS TS TS TS S TS TS

  8 S S S TS TS S TS TS TS S S S

  9 TS TS TS TS TS TS TS TS TS TS TS TS

  10 S TS S TS TS TS TS TS TS S S S

  11 TS TS TS TS TS S S TS TS S TS TS

  12 TS TS TS TS TS TS TS TS TS S TS TS

  3

  1

  1

  12

  2

  3

  4

  5

  

6

  7

  8

  9

  10

  11

  13

  

13 TS S TS S TS TS TS TS TS S S TS

 Parameter jumlah bintil akar

  1 S TS TS TS TS TS TS TS S S TS TS

  2 S S S S S TS S S S TS TS S

  3 TS S TS TS TS TS TS TS S TS TS TS

  4 TS S TS S S TS S S S S TS S

  5 TS S TS S TS TS TS TS S S TS TS

  7 TS TS TS TS TS TS TS TS S TS TS TS

  8 TS S TS S TS TS TS TS S S TS TS

  9 TS S TS S TS TS TS TS S S S TS

  10 S S S S S S S S S S TS S

  11 S TS TS S S S TS S S S TS S

  12 TS TS TS TS TS TS TS TS S TS TS TS

  

13 TS TS TS TS TS TS TS TS TS S TS TS

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  83

6. Efektivitas pupuk hayati

  Berat biji P5 - Berat biji P0 Berat biji NPK - Berat biji P0

   = 1,39 % RAE P15(2x) =

  Berat biji P10(3x) - Berat biji P0 Berat biji NPK - Berat biji P0

  x

  100 %

  =

  2,09 - 1,93 1,16 - 2,11

  x 100 %

   = 2,11 % RAE P15(1x) =

  Berat biji NPK - Berat biji P0

  x 100 % =

  2,10 - 1,93 2,83 - 2,11

  x 100 %

  Berat biji P 5(2x) - Berat biji P0 Berat biji NPK - Berat biji P0

  x 100 %

  x 100 % =

  2 - 1,93 1,80 - 2,11

  x 100 %

   = 35,48 % RAE P15(3x) =

  Berat biji P 5(3x) - Berat biji P0 Berat biji NPK - Berat biji P0

  x

  100 %

  =

  5,41 - 1,93 2,83 - 2,11

  x 100 %

   = 458,33 %

ADLN Perpustakaan Universitas Airlangga

   = 235,48 % RAE P10(3x) =

  0,73 - 1,93 0,71 - 2,11

  x 100 %

  Berat biji P5(3x) - Berat biji P0 Berat biji NPK - Berat biji P0

  RAE P5(1x) = Berat biji P5 - Berat biji P0 Berat biji NPK - Berat biji P0

  x

  

100 %

  =

  3,36 - 2,11 2,83 - 2,11

  x 100 % = 173,61 %

  RAE P5(2x) = Berat biji NPK - Berat biji P0

  x 100 % =

  1,75 - 1,93 1,80 - 2,11

  x 100 %

   = 116,13 % RAE P5(3x) =

  x 100 % =

  Rumus efektifitas pupuk hayati : RAE =

  3,72 - 1,93 1,16 - 2,11

  x 100 %

   = 169,48 % RAE P10(1x)

  =

  Berat biji P10(1x) - Berat biji P0 Berat biji NPK - Berat biji P0

  x

  

100 %

  =

  1,75 - 1,93 2,83 - 2,11

  x 100 %

   = 50 % RAE P10(2x) =

  Berat biji P10(2x) - Berat biji P0 Berat biji NPK - Berat biji P0

  x 100 % =

  84

  

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7. Produktivitas kacang hijau (V.radiata) di lahan

  = 0,06 m 2 /tanaman Jumlah tanaman/ha

  Produktivitas = 166666,67 m 2 /ha x 1.38 g/tanaman = 230000,00 g/ha = 0,23 ton/ha = 2,3 kw/ha

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  Produktivitas = 166666,67 m 2 /ha x 1.75 g/tanaman = 291666,67 g/ha = 0,29 ton/ha = 2,9 kw/ha

  f. Berat biji total P10(2x) = 1.38 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m 2 /tanaman Jumlah tanaman/ha =

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  g. Berat biji total P10(3x) = 2,09 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  e. Berat biji total P10(1x) = 1.75 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m 2 /tanaman Jumlah tanaman/ha =

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  Produktivitas = 166666,67 m 2 /ha x 2,09 g/tanaman = 348333,34 g/ha = 0,35 ton/ha

   = 3,5 kw/ha

  h. Berat biji total P15(1x) = 2,10 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m 2 /tanaman

  a. Berat biji total P0 = 2,11 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m /tanaman Jumlah tanaman/ha =

  Produktivitas = 166666,67 m 2 /ha x 3,72 g/tanaman = 620000,01 g/ha = 0,62 ton/ha = 6,2 kw/ha

  = 10000 0,06

  Produktivitas = 166666,67 m 2 /ha x 3,36 g/tanaman = 560000,67 g/ha = 0,56 ton/ha = 5,6 kw/ha

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  Produktivitas = 166666,67 m 2 /ha x 2,11 g/tanaman = 3516666,67 g/ha = 0,35 ton/ha

   = 3,5 kw/ha

  b. Berat biji total P5(1x) = 3,36 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m 2 /tanaman Jumlah tanaman/ha =

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  c. Berat biji total P5(2x) = 1,75 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  Produksi kacang hijau pada jenis perlakuan yang efektif dihitung dengan cara konversi ke dalam satuan ku/ha.

  = 0,06 m 2 /tanaman Jumlah tanaman/ha =

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  Produktivitas = 166666,67 m 2 /ha x 1,75 g/tanaman = 291666,67 g/ha = 0,29 ton/ha

   = 2,9 kw/ha

  d. Berat biji total P5(3x) = 3,72 g/tanaman Luas media tanam : 17 x 35 cm = 595 cm 2

  = 0,06 m 2 /tanaman Jumlah tanaman/ha =

  10000 0,06

  m 2 x 1 tanaman = 166666,67 m 2 /ha

  

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  85

  10000 2 Jumlah tanaman/ha = m x 1 tanaman

  l. Berat biji total NPK(2x) = 2,43 g/tanaman

  0,06 2 2

  = 166666,67 m /ha Luas media tanam : 17 x 35 cm = 595 cm 2 2 Produktivitas = 166666,67 m /ha x 2,10 = 0,06 m /tanaman

  10000

  g/tanaman 2 Jumlah tanaman/ha = m x 1 tanaman = 350000,01 g/ha

  0,06 2

  = 0,35 ton/ha = 166666,67 m /ha 2 Produktivitas = 166666,67 m /ha x 2,43 = 3.5 kw/ha

  g/tanaman = 405000,01 g/ha

  i. Berat biji total P15(2x) = 1,10

  = 0,41 ton/ha

  g/tanaman 2

  = 4,1 kw/ha

  Luas media tanam : 17 x 35 cm = 595 cm 2 = 0,06 m /tanaman

  m. Berat biji total NPK(1x) = 1,16 g/tanaman 2 10000 2 Luas media tanam : 17 x 35 cm = 595 cm

  Jumlah tanaman/ha = m x 1 tanaman 2

  0,06 2 = 0,06 m /tanaman

  = 166666,67 m /ha 2 Jumlah tanaman/ha = m x 1 tanaman 10000 2 Produktivitas = 166666,67 m /ha x 1,10 0,06 2 = 166666,67 m /ha g/tanaman 2 Produktivitas = 166666,67 m /ha x 1,16

  = 183333,34 g/ha

  g/tanaman

  = 0,18 ton/ha

  = 193333,34 g/ha

  = 1,8 kw/ha

  = 0,19 ton/ha = 1,9 kw/ha

  j. Berat biji total P15(3x) = 5,41 g/tanaman 2 Luas media tanam : 17 x 35 cm = 595 cm 2 = 0,06 m /tanaman

  10000 2 Jumlah tanaman/ha = m x 1 tanaman 0,06 2

  = 166666,67 m /ha 2 Produktivitas = 166666,67 m /ha x 5,41 g/tanaman = 901666,67 g/ha = 0,90 ton/ha

   = 9 kw/ha

  k. Berat biji total NPK(1x) = 2,83 g/tanaman 2 Luas media tanam : 17 x 35 cm = 595 cm 2 = 0,06 m /tanaman

  10000 2 Jumlah tanaman/ha = m x 1 tanaman 0,06 2

  = 166666,67 m /ha 2 Produktivitas = 166666,67 m /ha x 2,83 g/tanaman = 471666,68 g/ha = 0,47 ton/ha = 4,7 kw/ha

  

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  86

  87

8. Total Plate Count ke 1 sebelum inokulum dimasukkan ke molase Jenis Bakteri Pengenceran ke Jumlah mikroba

  Rhizobium leguminosarum

  10 -4 2,34 x 10 6

  10 -5 2,23 x 10 7

  10 -6 2,16 x 10 8 Lactobacillus plantarum

  10 -4 1,54 x 10 6

  10 -5 3,07 x 10 7

  10 -6 3,2 x 10 7 Fiksasi

  10 2,49 x 10

  10 -5 2,3 x 10 7

  • – N

  10 -6 1,5 x 10 8 Cellulomonas

  10 -5 1,56 x 10 7

  10 -6 1,27 x 10 8 Pelarut P

  10 -4 >300

  10 -5 >300

  10 -6 >300 Saccharomyces cerevisiae

  10 -4 >300

  10 -5 >300

  10 -6 >300 Bacillus subtilis

  10 -4 2,95 x 10 6

  10 -5 2,09 x 10 7

  10 -6 3,7 x 10 7 ADLN Perpustakaan Universitas Airlangga

  10 -4 1,93 x 10 6

  88

  

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9. Quality Control Product dan Total Plate Count ke 2 setelah proses inkubasi selama 1 minggu di dalam molase Media Selektif Jenis mikroba Pengenceran ke Jumlah mikroba (ulangan 1) Jumlah mikroba (ulangan 2)

  • 4
  • 5
  • 5
  • 4

  10

  • 5
  • 4
  • 5
  • 4
  • 5

  10

  4,6 x 10

  5 2,5 x 10

  5

  10

  2 x 10

  5 PDA Saccharomyces

  10

  6 CMC Cellulomonas

  2,2 x 10

  6 Media Selektif Jenis mikroba

  Volume mikroba dalam media Pelikel Intensitas NFB semi solid Fiksasi N

  0,1 mL Ada + Ada + Ada +

  1 mL Ada ++ Ada ++ Ada ++

  10 mL Ada +++ Ada +++ Ada +++

  MSA Rhizobium

  10

  6 3,6 x 10

  5,6 x 10

  10 3,4 x 10 >300

  5 2,5 x 10

  5

  10

  3,6 x 10

  6 1,2 x 10

  6 Picovkaya Pelarut P

  10

  4,4 x 10

  4,8 x 10

  6 1,8 x 10

  6 MRSA Lactobacillus

  10

  5,1 x 10

  5 6,4 x 10

  5

  10

  

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  89

10. Alat dan Bahan Penelitian Alat Penelitian:

  B C

  A. Gelas Beaker

  B. Pipet volume A

  C. Spatula

  D. Cawan petri D

  E. Glass finn

  F. Botol kultur

  G. Gelas ukur D

  H. Jarum ose

  I. Tabung cuvet J. Tabung reaksi K. Labu Erlenmeyer

  E F G H I J K

  

Neraca Analitik Colony Counter Spektrofotometer

Autoclave Timbangan Digital Laminar Air Flow

  90 Timbangan Biasa Termometer Kompor Listrik

  1

  5

  4

  3

  2

  1

  4

  3

  2

  4. Aluminium foil

  Vortex Penggaris Oven

  3. Kapas

  2. Spirtus

  1. Alkohol 70%

  6. Agar-agar powder

  5. Glukosa

  4. Pepton

  Nutrient Agar 2. Nutrient Broth 3. Yeast ekstrak

  Bahan Penelitian: 1.

6 ADLN Perpustakaan Universitas Airlangga

  

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  91

  Benih Kacang Hijau Tanah Kompos Daun Polybag

  Isolat Bakteri Pupuk NPK Kultur Murni Bakteri Pupuk Hayati Siap

  92

  Plot Percobaan di Green House Secara Acak Pertumbuhan kacang hijau hingga masa pemanenan Tanaman Muda Bunga Kacang Hijau Polong masih muda

  Polong yang masak Tanaman Setelah Panen Biomassa Tanaman

  Polong sudah dipanen Polong dipisahkan Akar kacang hijau

  

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11. Hasil Aplikasi Pupuk Hayati Pada Tanaman Kacang Hijau (V.radiata)

  

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  93

  Biji kacang hijau Akar dipisahkan Panjang akar Bintil Akar Tanaman Kacang Hijau (Vigna radiata)

  BINTIL AKAR