Hi all,
I need to report multiple regressions including their linear combinations in a single regression output table.
I have put together a loop command for this however, there seems to be something wrong.
If anyone is able to pick up on my mistake I would greatly appreciate the help.
and here is some sample data
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I need to report multiple regressions including their linear combinations in a single regression output table.
I have put together a loop command for this however, there seems to be something wrong.
If anyone is able to pick up on my mistake I would greatly appreciate the help.
Code:
// Define a list of dependent variables
local depvars "Too_Cheap Too_Exp"
// Split the list into separate variables
foreach depvar of local depvars {
// Run the regression
reg `depvar' i.Soc##i.Env Attitude if mon == 1
// Save the regression results in a table
esttab using tableVW.docx, se append keep(1.Soc 1.Env 1.Soc#1.Env Attitude) b(2) starlevel(* 0.10 ** 0.05 *** 0.01) f noobs coeflabel(1.Soc "Social" 1.Env "Environmental" 1.Soc#1.Env "Interaction" Attitude "Attitude")
// Calculate and save the first linear combination of coefficients
lincomest _b[1.Soc] + _b[1.Soc#1.Env]
esttab using tableVW.docx, append coeflabel((1) "Social + Interaction") f collabels(none) gaps plain nomtitles refcat((1) "\textit{Lincom}", nolabel) starlevel(* 0.10 ** 0.05 *** 0.01) cells(b(star fmt(2)) se(par fmt(2))) noobs
// Calculate and save the second linear combination of coefficients
lincomest _b[1.Env] + _b[1.Soc#1.Env]
esttab using tableVW.docx, append coeflabel((1) "Environmental + Interaction") f collabels(none) gaps plain nomtitles starlevel(* 0.10 ** 0.05 *** 0.01) cells(b(star fmt(2)) se(par fmt(2))) stat(N ar2, labels("\hline N") fmt(a1))
}
and here is some sample data
Code:
* Example generated by -dataex-. To install: ssc install dataex clear input byte Too_Cheap double Too_Exp float(Soc Env Soc_Env Attitude) 5 20 0 0 0 2.752432 5 29 0 1 0 -2.8950694 0 9 1 0 0 .5110834 9 40 1 1 1 .732045 5 50 0 0 0 -3.4892976 1 30 0 1 0 -.551881 5 22 1 0 0 -.3218607 5 50 1 1 1 -5.407672 19 39 0 0 0 -2.620099 10 30 0 1 0 -5.680028 3 30 1 0 0 3.2253044 1 40 1 1 1 2.1832685 5 100 0 0 0 -.25337616 12 35 0 1 0 -2.9394295 10 30 1 0 0 3.2737865 5 30 0 0 0 1.356387 20 50 1 1 1 .53297347 25 35 0 1 0 .6487824 15 25 1 0 0 -5.194101 5 35 0 0 0 .23693815 5 30 0 1 0 .8878359 10 100 1 0 0 -.14419919 25 200 1 1 1 4.15253 15 55 0 0 0 4.15253 20 30 0 1 0 .2208825 1 40 1 0 0 -5.680028 10 50 1 1 1 -1.9176644 5 50 0 0 0 1.2928877 11 23 0 1 0 1.538296 10 30 1 0 0 -1.4678836 10 40 0 0 0 -4.761057 20 75 1 1 1 -4.031064 10 100 0 1 0 1.067579 15 75 1 0 0 -2.513224 12 45 0 0 0 -.007169687 20 50 1 1 1 -2.1749706 13 25 0 1 0 -5.680028 5 35 1 0 0 .2177982 10 40 0 0 0 3.112751 10 80 0 1 0 .4424217 9 50 1 0 0 1.6943907 10 50 1 1 1 2.3797934 15 35 0 0 0 1.6561188 5 40 0 1 0 -2.427365 15 40 1 0 0 -.1600608 10 45 1 1 1 -4.1047564 20 45 0 0 0 .9708589 10 50 0 1 0 3.9095666 10 31 1 0 0 -5.680028 20 40 0 0 0 1.4430102 10 50 1 1 1 -1.193782 15 40 0 1 0 -.09726132 20 45 1 0 0 -.7637488 20 60 0 0 0 3.917984 15 60 1 1 1 2.8606074 10 50 0 1 0 -1.7110436 10 40 1 0 0 2.1630564 10 40 0 0 0 -1.3761293 15 40 0 1 0 -1.489069 19 70 1 1 1 .5454469 15 50 1 0 0 1.4580144 10 60 0 0 0 -.9691939 5 40 0 1 0 -5.135316 20 60 1 0 0 -1.2178873 20 40 0 0 0 .9535123 15 60 1 1 1 -4.223646 0 51 0 1 0 .19722734 5 100 1 0 0 .8239045 15 50 0 0 0 -1.213591 20 50 1 1 1 -1.9397106 15 85 0 1 0 -1.931437 20 39 0 0 0 .8540767 10 40 1 0 0 -1.2935084 20 50 1 1 1 2.165671 29 49 0 1 0 3.2146304 10 100 0 0 0 -3.069731 15 50 1 0 0 .1962577 20 50 0 1 0 -5.680028 10 80 1 1 1 1.440369 1 100 0 0 0 -5.680028 25 70 1 0 0 -2.569635 15 39 0 1 0 1.791618 5 80 0 0 0 -2.430315 25 80 1 0 0 .4588043 30 70 1 1 1 1.702249 25 50 0 1 0 -1.2351274 10 80 0 0 0 .25786176 25 45 1 0 0 3.15149 5 45 1 1 1 -4.463997 25 60 0 0 0 .4245142 25 55 0 1 0 1.6943907 20 45 1 0 0 .9025211 30 80 1 1 1 .11551856 35 36 0 0 0 2.6877315 10 50 0 1 0 -5.463506 20 100 1 0 0 -5.463506 15 50 0 0 0 1.210864 20 70 1 1 1 .7686392 25 60 0 1 0 -.7643542 20 100 1 0 0 1.5594715 end

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