Unusual Observations for B (dat)
Obs B (dat) Fit SE Fit Residual St Resid
115.019 | 6.105 | 20.756 | 2.40 R | |
31 94.522 | 117.867 | 6.105 | -23.345 | -2.70 R |
42 135.776 | 114.650 | 6.105 | 21.125 | 2.45 R |
Có thể bạn quan tâm!
- Nghiên cứu một số biện pháp kỹ thuật bón phân cho cây cà phê vối Coffea canephora Pierre giai đoạn kinh doanh trên đất bazan tại Đắk Lắk - 23
- Nghiên cứu một số biện pháp kỹ thuật bón phân cho cây cà phê vối Coffea canephora Pierre giai đoạn kinh doanh trên đất bazan tại Đắk Lắk - 24
- Nghiên cứu một số biện pháp kỹ thuật bón phân cho cây cà phê vối Coffea canephora Pierre giai đoạn kinh doanh trên đất bazan tại Đắk Lắk - 25
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Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 0.09799 | 0.09799 | 0.03266 | 0.86 | 0.473 |
Zn | 3 | 0.16112 | 0.16112 | 0.05371 | 1.41 | 0.258 |
B*Zn | 9 | 0.14202 | 0.14202 | 0.01578 | 0.41 | 0.918 |
Error | 32 | 1.21922 | 1.21922 | 0.03810 | ||
Total | 47 | 1.62035 |
R denotes an observation with a large standardized residual. Analysis of Variance for N% (la), using Adjusted SS for Tests
S = 0.195194 R-Sq = 24.76% R-Sq(adj) = 0.00%
Unusual Observations for N% (la)
Obs N% (la) Fit SE Fit Residual St Resid
3.56000 0.11270 0.42000 | 2.64 R | |
47 3.99500 | 3.54000 0.11270 0.45500 | 2.85 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 0.0007891 | 0.0007891 | 0.0002630 | 1.68 | 0.191 |
Zn | 3 | 0.0000599 | 0.0000599 | 0.0000200 | 0.13 | 0.943 |
B*Zn | 9 | 0.0016839 | 0.0016839 | 0.0001871 | 1.19 | 0.333 |
Error | 32 | 0.0050167 | 0.0050167 | 0.0001568 | ||
Total | 47 | 0.0075495 |
R denotes an observation with a large standardized residual. Analysis of Variance for P% (la), using Adjusted SS for Tests
S = 0.0125208 R-Sq = 33.55% R-Sq(adj) = 2.40%
Unusual Observations for P% (la)
Obs P% (la) Fit SE Fit Residual St Resid
0.007229 -0.023333 | -2.28 R | |
34 0.130000 0.153333 | 0.007229 -0.023333 | -2.28 R |
35 0.115000 0.136667 | 0.007229 -0.021667 | -2.12 R |
44 0.190000 0.160000 | 0.007229 0.030000 | 2.93 R |
R denotes an observation with a large standardized residual. Analysis of Variance for K% (la), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 0.6433 | 0.6433 | 0.2144 | 1.88 | 0.153 |
Zn | 3 | 0.1736 | 0.1736 | 0.0579 | 0.51 | 0.680 |
B*Zn | 9 | 0.2032 | 0.2032 | 0.0226 | 0.20 | 0.993 |
Error | 32 | 3.6496 | 3.6496 | 0.1140 | ||
Total | 47 | 4.6696 |
S = 0.337713 R-Sq = 21.84% R-Sq(adj) = 0.00%
Unusual Observations for K% (la)
Fit SE Fit | Residual St | Resid | ||
17 2.55000 | 1.92000 0.19498 | 0.63000 | 2.28 | R |
27 2.89000 | 2.18333 0.19498 | 0.70667 | 2.56 | R |
43 1.55000 | 2.18333 0.19498 | -0.63333 | -2.30 | R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 1.1579 | 1.1579 | 0.3860 | 0.60 | 0.621 |
Zn | 3 | 0.7752 | 0.7752 | 0.2584 | 0.40 | 0.754 |
B*Zn | 9 | 0.4815 | 0.4815 | 0.0535 | 0.08 | 1.000 |
Error | 32 | 20.6742 | 20.6742 | 0.6461 | ||
Total | 47 | 23.0888 |
R denotes an observation with a large standardized residual. Analysis of Variance for CaO% (la), using Adjusted SS for Tests
S = 0.803784 R-Sq = 10.46% R-Sq(adj) = 0.00%
Unusual Observations for CaO% (la)
SE Fit Residual | St Resid | |
47 3.59500 2.21667 | 0.46406 1.37833 | 2.10 R |
48 3.65500 2.28667 | 0.46406 1.36833 | 2.08 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 0.023947 | 0.023947 | 0.007982 | 2.78 | 0.057 |
Zn | 3 | 0.001506 | 0.001506 | 0.000502 | 0.17 | 0.913 |
B*Zn | 9 | 0.005651 | 0.005651 | 0.000628 | 0.22 | 0.990 |
Error | 32 | 0.091933 | 0.091933 | 0.002873 | ||
Total | 47 | 0.123037 |
R denotes an observation with a large standardized residual. Analysis of Variance for MgO%(la), using Adjusted SS for Tests
S = 0.0535996 R-Sq = 25.28% R-Sq(adj) = 0.00%
Unusual Observations for MgO%(la)
Obs MgO%(la) Fit SE Fit Residual St Resid
0.030946 -0.098333 | -2.25 R | |
47 0.540000 0.405000 | 0.030946 0.135000 | 3.08 R |
48 0.555000 0.403333 | 0.030946 0.151667 | 3.47 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 495.956 | 495.956 | 165.319 | 21.10 | 0.009 |
Zn | 3 | 346.658 | 346.658 | 115.553 | 14.75 | 0.009 |
B*Zn | 9 | 864.340 | 864.340 | 96.037 | 2.68 | 0.023 |
Error | 32 | 250.718 | 250.718 | 35.835 | ||
Total | 47 | 1141.098 |
R denotes an observation with a large standardized residual. Analysis of Variance for Zn (la), using Adjusted SS for Tests
S = 2.79910 R-Sq = 78.03% R-Sq(adj) = 67.73%
Unusual Observations for Zn (la)
Fit | SE Fit | Residual | St | Resid | ||
3 29.0784 | 23.9728 | 1.6161 | 5.1056 | 2.23 | R | |
31 40.9100 | 35.9124 | 1.6161 | 4.9976 | 2.19 | R | |
32 39.8500 | 34.8501 | 1.6161 | 4.9999 | 2.19 | R | |
35 18.8700 | 23.9728 | 1.6161 | -5.1028 | -2.23 | R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 822.17 | 822.17 | 274.06 | 10.11 | 0.009 |
Zn | 3 | 243.17 | 243.17 | 81.05 | 2.99 | 0.035 |
B*Zn | 9 | 519.69 | 519.69 | 57.74 | 2.13 | 0.048 |
Error | 32 | 867.46 | 867.46 | 27.11 | ||
Total | 47 | 1884.72 |
R denotes an observation with a large standardized residual. Analysis of Variance for B (la), using Adjusted SS for Tests
S = 5.20655 R-Sq = 53.97% R-Sq(adj) = 32.40%
Unusual Observations for B (la)
Fit SE Fit | Residual St | Resid | |
12 34.7830 | 44.8485 3.0060 | -10.0655 | -2.37 R |
44 56.5900 | 44.8485 3.0060 | 11.7415 | 2.76 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 1.03851 | 1.03851 | 0.34617 | 5.12 | 0.005 |
Zn | 3 | 0.56403 | 0.56403 | 0.18801 | 2.78 | 0.041 |
B*Zn | 9 | 1.48515 | 1.48515 | 0.16501 | 2.44 | 0.039 |
Error | 32 | 2.16402 | 2.16402 | 0.06763 | ||
Total | 47 | 3.83248 |
R denotes an observation with a large standardized residual. Analysis of Variance for Diep luc a, using Adjusted SS for Tests
S = 0.260049 R-Sq = 43.53% R-Sq(adj) = 17.07%
Unusual Observations for Diep luc a
Obs Diep luc a Fit SE Fit Residual St Resid
2.15198 1.61688 | 0.15014 0.53510 | 2.52 R | |
47 | 2.50046 2.02206 | 0.15014 0.47841 | 2.25 R |
R denotes an observation with a large standardized residual. Analysis of Variance for Diep luc b, using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 0.028732 | 0.028732 | 0.009577 | 3.22 | 0.036 |
Zn | 3 | 0.004420 | 0.004420 | 0.001473 | 0.49 | 0.688 |
B*Zn | 9 | 0.046464 | 0.046464 | 0.005163 | 1.73 | 0.122 |
Error | 32 | 0.095287 | 0.095287 | 0.002978 | ||
Total | 47 | 0.174903 |
S = 0.0545684 R-Sq = 45.52% R-Sq(adj) = 19.98%
Unusual Observations for Diep luc b
SE Fit | Residual St Resid | |
33 0.79242 0.92132 | 0.03151 | -0.12890 -2.89 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 1.37069 | 1.37069 | 0.45690 | 6.10 | 0.002 |
Zn | 3 | 0.39876 | 0.39876 | 0.13292 | 1.78 | 0.172 |
B*Zn | 9 | 0.40625 | 0.40625 | 0.04514 | 0.60 | 0.785 |
Error | 32 | 2.39556 | 2.39556 | 0.07486 | ||
Total | 47 | 4.57126 |
R denotes an observation with a large standardized residual. Analysis of Variance for Diep luc ts, using Adjusted SS for Tests
S = 0.273608 R-Sq = 47.60% R-Sq(adj) = 23.03%
Unusual Observations for Diep luc ts
Obs Diep luc ts Fit SE Fit Residual St Resid 29 3.12636 2.58040 0.15797 0.54596 2.44 R
47 3.59138 3.02951 0.15797 0.56187 2.52 R
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 0.07276 | 0.07276 | 0.02425 | 1.16 | 0.340 |
Zn | 3 | 0.11001 | 0.11001 | 0.03667 | 1.75 | 0.176 |
B*Zn | 9 | 0.13965 | 0.13965 | 0.01552 | 0.74 | 0.668 |
Error | 32 | 0.66879 | 0.66879 | 0.02090 | ||
Total | 47 | 0.99121 |
R denotes an observation with a large standardized residual. Analysis of Variance for Carotenoid, using Adjusted SS for Tests
S = 0.144567 R-Sq = 32.53% R-Sq(adj) = 0.90%
Unusual Observations for Carotenoid
Obs Carotenoid Fit SE Fit Residual St Resid
1.27190 1.03221 | 0.08347 0.23969 | 2.03 R | |
47 | 1.52774 1.08969 | 0.08347 0.43805 | 3.71 R |
48 | 1.37932 1.05935 | 0.08347 0.31997 | 2.71 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 0.3077 | 0.3077 | 0.1026 | 0.42 | 0.741 |
Zn | 3 | 0.1128 | 0.1128 | 0.0376 | 0.15 | 0.927 |
B*Zn | 9 | 0.3378 | 0.3378 | 0.0375 | 0.15 | 0.997 |
Error | 32 | 7.8465 | 7.8465 | 0.2452 | ||
Total | 47 | 8.6048 |
R denotes an observation with a large standardized residual. Analysis of Variance for CDTHN, using Adjusted SS for Tests
S = 0.495179 R-Sq = 8.81% R-Sq(adj) = 0.00%
Unusual Observations for CDTHN
Obs CDTHN Fit SE Fit Residual St Resid
1.08333 0.28589 1.00667 | 2.49 R | |
43 1.91000 | 1.07000 0.28589 0.84000 | 2.08 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 135.64 | 135.64 | 45.21 | 0.95 | 0.428 |
Zn | 3 | 46.34 | 46.34 | 15.45 | 0.32 | 0.808 |
B*Zn | 9 | 36.53 | 36.53 | 4.06 | 0.09 | 1.000 |
Error | 32 | 1523.38 | 1523.38 | 47.61 | ||
Total | 47 | 1741.89 |
R denotes an observation with a large standardized residual. Analysis of Variance for CDQH, using Adjusted SS for Tests
S = 6.89968 R-Sq = 12.54% R-Sq(adj) = 0.00%
Unusual Observations for CDQH
Fit SE Fit | Residual St Resid | |
47 36.0000 | 21.7667 3.9835 | 14.2333 2.53 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for Nong do CO2 trong gian bao, using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 2256.1 | 2256.1 | 752.0 | 1.92 | 0.147 |
Zn | 3 | 1320.7 | 1320.7 | 440.2 | 1.12 | 0.355 |
B*Zn | 9 | 2941.2 | 2941.2 | 326.8 | 0.83 | 0.592 |
Error | 32 | 12566.0 | 12566.0 | 392.7 | ||
Total | 47 | 19084.0 |
S = 19.8163 R-Sq = 34.15% R-Sq(adj) = 3.29%
Unusual Observations for Nong do CO2 trong gian bao Nong do
CO2 trong
Obs gian bao Fit SE Fit Residual St Resid
11.441 -52.333 | -3.23 R | |
30 297.000 335.000 | 11.441 -38.000 | -2.35 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 172861 | 172861 | 57620 | 1.14 | 0.347 |
Zn | 3 | 39545 | 39545 | 13182 | 0.26 | 0.853 |
B*Zn | 9 | 52188 | 52188 | 5799 | 0.11 | 0.999 |
Error | 32 | 1614125 | 1614125 | 50441 | ||
Total | 47 | 1878720 |
R denotes an observation with a large standardized residual. Analysis of Variance for DMKK, using Adjusted SS for Tests
S = 224.592 R-Sq = 14.08% R-Sq(adj) = 0.00%
Unusual Observations for DMKK
Obs DMKK Fit SE Fit Residual St Resid
5 1733.17 1267.39 129.67 465.78 2.54 R
R denotes an observation with a large standardized residual.
Analysis of Variance for Dai canh du tru (cm), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 57.82 | 57.82 | 19.27 | 1.12 | 0.357 |
Zn | 3 | 33.97 | 33.97 | 11.32 | 0.66 | 0.585 |
B*Zn | 9 | 33.99 | 33.99 | 3.78 | 0.22 | 0.990 |
Error | 32 | 552.07 | 552.07 | 17.25 | ||
Total | 47 | 677.84 |
S = 4.15356 R-Sq = 18.56% R-Sq(adj) = 0.00%
Unusual Observations for Dai canh du tru (cm) Dai canh du
Obs tru (cm) Fit SE Fit Residual St Resid
47.4464 39.7542 2.3981 7.6921 | 2.27 R | |
47 | 49.7825 40.6365 2.3981 9.1460 | 2.70 R |
48 | 47.4365 40.1650 2.3981 7.2715 | 2.14 R |
Source | DF | Seq SS | Adj SS | Adj MS | F | P |
B | 3 | 1.6965 | 1.6965 | 0.5655 | 1.79 | 0.169 |
Zn | 3 | 2.7937 | 2.7937 | 0.9312 | 2.94 | 0.048 |
B*Zn | 9 | 2.5266 | 2.5266 | 0.2807 | 0.89 | 0.547 |
Error | 32 | 10.1265 | 10.1265 | 0.3165 | ||
Total | 47 | 17.1433 |
R denotes an observation with a large standardized residual. Analysis of Variance for Toc do ra dot, using Adjusted SS for Tests
S = 0.562540 R-Sq = 40.93% R-Sq(adj) = 13.24%
Unusual Observations for Toc do ra dot
Fit SE Fit | Residual St | Resid | |
16 5.28045 | 6.29695 0.32478 | -1.01649 | -2.21 R |
43 7.57261 | 6.36739 0.32478 | 1.20522 | 2.62 R |
44 7.86903 | 6.28557 0.32478 | 1.58347 | 3.45 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for Canh kho/cay (canh), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 8.572 | 8.572 | 2.857 | 1.49 | 0.235 |
Zn | 3 | 3.297 | 3.297 | 1.099 | 0.57 | 0.636 |
B*Zn | 9 | 2.015 | 2.015 | 0.224 | 0.12 | 0.999 |
Error | 32 | 61.298 | 61.298 | 1.916 | ||
Total | 47 | 75.182 |
S = 1.38404 R-Sq = 18.47% R-Sq(adj) = 0.00%
Unusual Observations for Canh kho/cay (canh)
Fit | SE Fit | Residual St Resid | |
4 8.7586 | 12.0145 | 0.7991 | -3.2559 -2.88 R |
7 8.7501 | 11.5322 | 0.7991 | -2.7821 -2.46 R |
39 14.6915 | 11.5322 | 0.7991 | 3.1592 2.80 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for So dot/canh (dot), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 7.633 | 7.633 | 2.544 | 2.34 | 0.091 |
Zn | 3 | 3.863 | 3.863 | 1.288 | 1.19 | 0.330 |
B*Zn | 9 | 2.696 | 2.696 | 0.300 | 0.28 | 0.977 |
Error | 32 | 34.729 | 34.729 | 1.085 | ||
Total | 47 | 48.921 |
S = 1.04178 R-Sq = 29.01% R-Sq(adj) = 0.00%
Unusual Observations for So dot/canh (dot) So dot/canh
Obs (dot) Fit SE Fit Residual St Resid
8.0455 | 9.7907 | 0.6015 -1.7452 | -2.05 R | |
43 | 10.9070 | 9.0370 | 0.6015 1.8699 | 2.20 R |
47 | 12.3820 | 9.7907 | 0.6015 2.5913 | 3.05 R |
48 | 12.0455 | 9.5417 | 0.6015 2.5038 | 2.94 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for Chum qua (chum), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 3093.1 | 3093.1 | 1031.0 | 1.08 | 0.373 |
Zn | 3 | 1065.2 | 1065.2 | 355.1 | 0.37 | 0.775 |
B*Zn | 9 | 1253.2 | 1253.2 | 139.2 | 0.15 | 0.998 |
Error | 32 | 30656.4 | 30656.4 | 958.0 | ||
Total | 47 | 36068.0 |
S = 30.9518 R-Sq = 15.00% R-Sq(adj) = 0.00%
Unusual Observations for Chum hoa, qua (chum) Chum qua
Obs (chum) Fit SE Fit Residual St Resid 38 484.660 423.701 17.870 60.959 2.41 R
R denotes an observation with a large standardized residual.
Analysis of Variance for P100 qua tuoi (g), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 673.6 | 673.6 | 224.5 | 1.16 | 0.342 |
Zn | 3 | 487.0 | 487.0 | 162.3 | 0.84 | 0.484 |
B*Zn | 9 | 38.5 | 38.5 | 4.3 | 0.02 | 1.000 |
Error | 32 | 6214.6 | 6214.6 | 194.2 | ||
Total | 47 | 7413.7 |
S = 13.9358 R-Sq = 16.17% R-Sq(adj) = 0.00%
Unusual Observations for P100 qua tuoi (g) P100 qua
Obs tuoi (g) Fit SE Fit Residual St Resid 38 104.641 129.835 8.046 -25.194 -2.21 R
R denotes an observation with a large standardized residual. Analysis of Variance for Ty le tuoi/nha, using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 0.27824 | 0.27824 | 0.09275 | 2.14 | 0.115 |
Zn | 3 | 0.28524 | 0.28524 | 0.09508 | 2.19 | 0.108 |
B*Zn | 9 | 0.18860 | 0.18860 | 0.02096 | 0.48 | 0.875 |
Error | 32 | 1.38656 | 1.38656 | 0.04333 | ||
Total | 47 | 2.13863 |
S = 0.208158 R-Sq = 35.17% R-Sq(adj) = 4.78%
Unusual Observations for Ty le tuoi/nha
Residual St | Resid | |
18 3.81496 4.19753 0.12018 | -0.38257 | -2.25 R |
40 3.63074 4.10205 0.12018 | -0.47132 | -2.77 R |
41 4.63293 4.20268 0.12018 | 0.43026 | 2.53 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for Nang suat tuoi (tan), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 1.252 | 1.252 | 0.417 | 2.12 | 0.048 |
Zn | 3 | 1.235 | 1.235 | 0.411 | 2.09 | 0.045 |
B*Zn | 9 | 3.616 | 3.616 | 0.401 | 2.04 | 0.041 |
Error | 32 | 111.907 | 111.907 | 0.197 | ||
Total | 47 | 120.662 |
S = 1.87005 R-Sq = 7.26% R-Sq(adj) = 0.00%
Unusual Observations for Nang suat tuoi (tan) Nang suat
Obs tuoi (tan) Fit SE Fit Residual St Resid
18.3901 14.7464 | 1.0797 3.6437 | 2.39 R | |
45 | 17.6697 13.9783 | 1.0797 3.6914 | 2.42 R |
R denotes an observation with a large standardized residual.
Analysis of Variance for Nang suat nhan (tan), using Adjusted SS for Tests
DF | Seq SS | Adj SS | Adj MS | F | P | |
B | 3 | 0.5263 | 0.5263 | 0.1754 | 2.43 | 0.047 |
Zn | 3 | 0.5025 | 0.5025 | 0.1675 | 2.32 | 0.045 |
B*Zn | 9 | 1.3905 | 1.3905 | 0.1545 | 2.14 | 0.039 |
Error | 32 | 5.8313 | 5.8313 | 0.0722 | ||
Total | 47 | 7.3917 |
S = 0.426884 R-Sq = 21.11% R-Sq(adj) = 0.00%
Unusual Observations for Nang suat nhan (tan) Nang suat
Obs nhan (tan) Fit SE Fit Residual St Resid
4.35323 3.63586 | 0.24646 0.71737 | 2.06 R | |
27 | 4.23434 3.49604 | 0.24646 0.73830 | 2.12 R |
32 | 4.56284 3.69529 | 0.24646 0.86755 | 2.49 R |
R denotes an observation with a large standardized residual.