Esatdistica SEMEN

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data dbca prim mot; Input trat $ bloq $ rep $ mot; cards ; t1 h0 r1 90 t1 h0 r2 86 t1 h0 r3 88 t1 h0 r4 90 t1 h0 r5 86 t1 h24 r1 86 t1 h24 r2 82 t1 h24 r3 86 t1 h24 r4 85 t1 h24 r5 82 t1 h48 r1 75 t1 h48 r2 72 t1 h48 r3 71 t1 h48 r4 75 t1 h48 r5 70 t1 h72 r1 62 t1 h72 r2 60 t1 h72 r3 58 t1 h72 r4 63 t1 h72 r5 60 t2 h0 r1 95 t2 h0 r2 93 t2 h0 r3 98 t2 h0 r4 96 t2 h0 r5 92 t2 h24 r1 92 t2 h24 r2 85 t2 h24 r3 90 t2 h24 r4 90 t2 h24 r5 88 t2 h48 r1 40 t2 h48 r2 35 t2 h48 r3 42 t2 h48 r4 40 t2 h48 r5 38 t2 h72 r1 0 t2 h72 r2 0 t2 h72 r3 0 t2 h72 r4 0 t2 h72 r5 0 ; proc anova ; class trat bloq rep; model mot=rep bloq trat; means trat bloq/ duncan ; run ;

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Transcript of Esatdistica SEMEN

data dbca prim mot;Input trat $ bloq $ rep $ mot;cards;t1 h0 r1 90t1 h0 r2 86t1 h0 r3 88t1 h0 r4 90t1 h0 r5 86t1 h24 r1 86t1 h24 r2 82t1 h24 r3 86t1 h24 r4 85t1 h24 r5 82t1 h48 r1 75t1 h48 r2 72t1 h48 r3 71t1 h48 r4 75t1 h48 r5 70t1 h72 r1 62t1 h72 r2 60t1 h72 r3 58t1 h72 r4 63t1 h72 r5 60t2 h0 r1 95t2 h0 r2 93t2 h0 r3 98t2 h0 r4 96t2 h0 r5 92 t2 h24 r1 92t2 h24 r2 85t2 h24 r3 90t2 h24 r4 90t2 h24 r5 88t2 h48 r1 40t2 h48 r2 35t2 h48 r3 42t2 h48 r4 40t2 h48 r5 38t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;

data dbca prim vit;Input trat $ bloq $ rep $ vit;cards;t1 h0 r1 90t1 h0 r2 88t1 h0 r3 89t1 h0 r4 90t1 h0 r5 86t1 h24 r1 88t1 h24 r2 85t1 h24 r3 83t1 h24 r4 85t1 h24 r5 83t1 h48 r1 74t1 h48 r2 72t1 h48 r3 74t1 h48 r4 75t1 h48 r5 73t1 h72 r1 60t1 h72 r2 58t1 h72 r3 62t1 h72 r4 63t1 h72 r5 60t2 h0 r1 98t2 h0 r2 96t2 h0 r3 98t2 h0 r4 98t2 h0 r5 96 t2 h24 r1 93t2 h24 r2 90t2 h24 r3 92t2 h24 r4 90t2 h24 r5 93t2 h48 r1 46t2 h48 r2 40t2 h48 r3 43t2 h48 r4 45t2 h48 r5 42t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model vit=rep bloq trat;means trat bloq/duncan;run;

data dbca second mot;Input trat $ bloq $ rep $ mot;cards;t1 h0 r1 90t1 h0 r2 92t1 h0 r3 90t1 h0 r4 88t1 h0 r5 92t1 h24 r1 80t1 h24 r2 85t1 h24 r3 88t1 h24 r4 82t1 h24 r5 84t1 h48 r1 72t1 h48 r2 73t1 h48 r3 72t1 h48 r4 74t1 h48 r5 70t1 h72 r1 62t1 h72 r2 60t1 h72 r3 58t1 h72 r4 62t1 h72 r5 60t2 h0 r1 97t2 h0 r2 96t2 h0 r3 98t2 h0 r4 96t2 h0 r5 97 t2 h24 r1 92t2 h24 r2 92t2 h24 r3 85t2 h24 r4 90t2 h24 r5 93t2 h48 r1 42t2 h48 r2 32t2 h48 r3 40t2 h48 r4 35t2 h48 r5 42t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;

data dbca second vit;Input trat $ bloq $ rep $ vit;cards;t1 h0 r1 95t1 h0 r2 88t1 h0 r3 90t1 h0 r4 85t1 h0 r5 88t1 h24 r1 86t1 h24 r2 83t1 h24 r3 85t1 h24 r4 84t1 h24 r5 85t1 h48 r1 74t1 h48 r2 76t1 h48 r3 72t1 h48 r4 74t1 h48 r5 72t1 h72 r1 62t1 h72 r2 58t1 h72 r3 56t1 h72 r4 60t1 h72 r5 58t2 h0 r1 96t2 h0 r2 98t2 h0 r3 98t2 h0 r4 96t2 h0 r5 95 t2 h24 r1 90t2 h24 r2 95t2 h24 r3 94t2 h24 r4 93t2 h24 r5 92t2 h48 r1 44t2 h48 r2 43t2 h48 r3 42t2 h48 r4 41t2 h48 r5 43t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model vit=rep bloq trat;means trat bloq/duncan;run;

data dbca tercer mot;Input trat $ bloq $ rep $ mot;cards;t1 h0 r1 84t1 h0 r2 90t1 h0 r3 88t1 h0 r4 90t1 h0 r5 85t1 h24 r1 80t1 h24 r2 85t1 h24 r3 83t1 h24 r4 80t1 h24 r5 80t1 h48 r1 70t1 h48 r2 68t1 h48 r3 73t1 h48 r4 74t1 h48 r5 72t1 h72 r1 62t1 h72 r2 60t1 h72 r3 58t1 h72 r4 60t1 h72 r5 62t2 h0 r1 96t2 h0 r2 97t2 h0 r3 96t2 h0 r4 94t2 h0 r5 95 t2 h24 r1 90t2 h24 r2 88t2 h24 r3 92t2 h24 r4 91t2 h24 r5 90t2 h48 r1 46t2 h48 r2 36t2 h48 r3 38t2 h48 r4 35t2 h48 r5 40t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;

data dbca tercer vit;Input trat $ bloq $ rep $ vit;cards;t1 h0 r1 92t1 h0 r2 87t1 h0 r3 95t1 h0 r4 88t1 h0 r5 89t1 h24 r1 87t1 h24 r2 85t1 h24 r3 88t1 h24 r4 84t1 h24 r5 85t1 h48 r1 74t1 h48 r2 72t1 h48 r3 74t1 h48 r4 70t1 h48 r5 73t1 h72 r1 62t1 h72 r2 60t1 h72 r3 58t1 h72 r4 60t1 h72 r5 56t2 h0 r1 98t2 h0 r2 95t2 h0 r3 96t2 h0 r4 95t2 h0 r5 98t2 h24 r1 92t2 h24 r2 93t2 h24 r3 92t2 h24 r4 92t2 h24 r5 93t2 h48 r1 42t2 h48 r2 44t2 h48 r3 43t2 h48 r4 41t2 h48 r5 43t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model vit=rep bloq trat;means trat bloq/duncan;run;

data dbca cuarta mot;Input trat $ bloq $ rep $ mot;cards;t1 h0 r1 86t1 h0 r2 88t1 h0 r3 90t1 h0 r4 88t1 h0 r5 86t1 h24 r1 80t1 h24 r2 84t1 h24 r3 84t1 h24 r4 85t1 h24 r5 82t1 h48 r1 72t1 h48 r2 70t1 h48 r3 73t1 h48 r4 74t1 h48 r5 72t1 h72 r1 60t1 h72 r2 58t1 h72 r3 62t1 h72 r4 64t1 h72 r5 62t2 h0 r1 98t2 h0 r2 96t2 h0 r3 98t2 h0 r4 96t2 h0 r5 97 t2 h24 r1 92t2 h24 r2 92t2 h24 r3 94t2 h24 r4 93t2 h24 r5 92t2 h48 r1 48t2 h48 r2 40t2 h48 r3 42t2 h48 r4 40t2 h48 r5 42t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;

data dbca cuarta vit;Input trat $ bloq $ rep $ vit;cards;t1 h0 r1 90t1 h0 r2 84t1 h0 r3 90t1 h0 r4 86t1 h0 r5 85t1 h24 r1 85t1 h24 r2 82t1 h24 r3 83t1 h24 r4 82t1 h24 r5 80t1 h48 r1 70t1 h48 r2 75t1 h48 r3 70t1 h48 r4 73t1 h48 r5 72t1 h72 r1 60t1 h72 r2 62t1 h72 r3 63t1 h72 r4 60t1 h72 r5 62t2 h0 r1 97t2 h0 r2 96t2 h0 r3 98t2 h0 r4 94t2 h0 r5 96t2 h24 r1 92t2 h24 r2 90t2 h24 r3 92t2 h24 r4 90t2 h24 r5 93t2 h48 r1 44t2 h48 r2 46t2 h48 r3 45t2 h48 r4 46t2 h48 r5 48t2 h72 r1 0t2 h72 r2 0t2 h72 r3 0t2 h72 r4 0t2 h72 r5 0;proc anova;class trat bloq rep;model vit=rep bloq trat;means trat bloq/duncan;run;

esta si

data dbca 0 horas mot;Input trat $ bloq $ rep $ mot;cards;t1 b11 r1 90t1 b11 r2 86t1 b11 r3 88t1 b11 r4 90t1 b11 r5 86t1 b21 r1 90t1 b21 r2 92t1 b21 r3 90t1 b21 r4 88t1 b21 r5 92t1 b31 r1 84t1 b31 r2 90t1 b31 r3 88t1 b31 r4 90t1 b31 r5 85t1 b41 r1 86t1 b41 r2 88t1 b41 r3 90t1 b41 r4 88t1 b41 r5 86t2 b12 r1 95t2 b12 r2 93t2 b12 r3 98t2 b12 r4 96t2 b12 r5 92 t2 b22 r1 97t2 b22 r2 96t2 b22 r3 98t2 b22 r4 96t2 b22 r5 97t2 b32 r1 96t2 b32 r2 97t2 b32 r3 96t2 b32 r4 94t2 b32 r5 95t2 b42 r1 98t2 b42 r2 96t2 b42 r3 98t2 b42 r4 96t2 b42 r5 97;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;The SAS System 16:41 Wednesday, April 5, 2000 1

The ANOVA Procedure

Class Level Information

Class Levels Values

trat 2 t1 t2

bloq 8 b11 b12 b21 b22 b31 b32 b41 b42

rep 5 r1 r2 r3 r4 r5

Number of observations 40

The ANOVA Procedure

Duncan's Multiple Range Test for mot

NOTE: This test controls the Type I comparisonwise error rate, not the experimentwise error rate.

Alpha 0.05 Error Degrees of Freedom 27 Error Mean Square 0

Number of Means 2 Critical Range 0

Means with the same letter are not significantly different.

Duncan Grouping Mean N trat

A 96.05 20 t2

B 88.35 20 t1

The SAS System 16:41 Wednesday, April 5, 2000 4

The ANOVA Procedure

Duncan's Multiple Range Test for mot

NOTE: This test controls the Type I comparisonwise error rate, not the experimentwise error rate.

Alpha 0.05 Error Degrees of Freedom 27 Error Mean Square 0

Number of Means 2 3 4 5 6 7 8 Critical Range 0 0 0 0 0 0 0

Means with the same letter are not significantly different.

Duncan Grouping Mean N bloq

A 97.00 5 b42

B 96.80 5 b22

C 95.60 5 b32

D 94.80 5 b12

E 90.40 5 b21

F 88.00 5 b11

G 87.60 5 b41

H 87.40 5 b31

data dbca 24 horas mot;Input trat $ bloq $ rep $ mot;cards;

t1 b11 r1 86t1 b11 r2 82t1 b11 r3 86t1 b11 r4 85t1 b11 r5 82t1 b21 r1 80t1 b21 r2 85t1 b21 r3 88t1 b21 r4 82t1 b21 r5 84t1 b31 r1 80t1 b31 r2 85t1 b31 r3 83t1 b31 r4 80t1 b31 r5 80t1 b41 r1 80t1 b41 r2 84t1 b41 r3 84t1 b41 r4 85t1 b41 r5 82t2 b12 r1 92t2 b12 r2 85t2 b12 r3 90t2 b12 r4 90t2 b12 r5 88t2 b22 r1 92t2 b22 r2 92t2 b22 r3 85t2 b22 r4 90t2 b22 r5 93t2 b32 r1 90t2 b32 r2 88t2 b32 r3 92t2 b32 r4 91t2 b32 r5 90t2 b42 r1 92t2 b42 r2 92t2 b42 r3 94t2 b42 r4 93t2 b42 r5 92

;proc anova;class trat bloq rep;model mot=rep bloq trat;means trat bloq/duncan;run;

The SAS System The ANOVA Procedure

Class Level Information

Class Levels Values

trat 2 t1 t2

bloq 8 b11 b12 b21 b22 b31 b32 b41 b42

rep 5 r1 r2 r3 r4 r5

Number of observations 40

The SAS System The ANOVA Procedure

Dependent Variable: mot

Sum of Source F Squares Mean Square F Value Pr > F

Model 12 773.1000000 64.4250000 Infty F

rep 4 9.8500000 2.4625000 Infty F

Model 12 10876.37500 906.36458 Infty F

rep 4 97.75000 24.43750 Infty F

Model 15 36844.77500 2456.31833 Infty Frep 4 14.90000 3.72500 Infty F

Model 12 816.7750000 68.0645833 Infty F

rep 4 77.4000000 19.3500000 Infty F

Model 12 676.4000000 56.3666667 Infty F

rep 4 31.6500000 7.9125000 Infty F

Model 12 8775.500000 731.291667 Infty F

rep 4 2.250000 0.562500 Infty F

Model 12 36086.00000 3007.16667 Infty F

rep 4 5.75000 1.43750 Infty