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@ -344,16 +344,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0) cov(1) dim(4) pcm(D) clear
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@ -400,16 +400,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0.2) cov(1) dim(4) pcm(D) clear
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@ -449,16 +449,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0) cov(1) dim(4) pcm(D) clear
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@ -512,16 +512,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0.4) cov(1) dim(4) pcm(D) clear
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@ -561,16 +561,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.3,0.3,0.3 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.3,0.3,0.3 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.3,0.3,0.3 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.3,0.3,0.3)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0) cov(1) dim(4) pcm(D) clear
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@ -987,16 +987,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0.2) cov(1) dim(4) pcm(D) clear
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@ -1036,16 +1036,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0) cov(1) dim(4) pcm(D) clear
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@ -1099,16 +1099,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0.4) cov(1) dim(4) pcm(D) clear
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@ -1148,16 +1148,16 @@ forvalues replication = 1/1000 {
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mat B= (-1.84,-0.84,0.16 \ -1.25,-0.25,0.75 \ -0.75,0.25,1.25 \ 0.16,0.84,1.84)
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if `difi'==1 {
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mat D= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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mat E= (0.5,0.5,0.5 \ 0,0,0 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==2 {
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mat D= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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mat E= (0,0,0 \ 0.5,0.5,0.5 \ 0,0,0 \ 0,0,0)
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}
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if `difi'==3 {
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mat D= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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mat E= (0,0,0 \ 0,0,0 \ 0.5,0.5,0.5 \ 0,0,0)
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}
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if `difi'==4 {
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mat D= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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mat E= (0,0,0 \ 0,0,0 \ 0,0,0 \ 0.5,0.5,0.5)
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}
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mat D=B+E
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qui simirt, nbobs(`Nn') mu(0) cov(1) dim(4) pcm(D) clear
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