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Breakout1
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# If you are copy/pasting this to an R Notebook, select "Raw" from the GitHub page before you copy. | |
# Replication file of Section 5 in | |
# Iacus, King, Porro (2011), Multivariate Matching Methods | |
# That Are Monotonic Imbalance Bounding, JASA, V 106, N. 493, | |
# p. 345-361 | |
foo <- read.csv(url("https://course-resources.minerva.kgi.edu/uploaded_files/mke/00089202-1711/daughters.csv")) | |
# Table 1 in Ebonya | |
# Indep. vars | |
# anygirls: Any female children | |
# ngirls: Number of female children | |
# totchi: Total number of children | |
# white: White=1, 0 otherwise | |
# female: Female=1, 0 otherwise | |
# age: age | |
# srvlng: Service length (years) | |
# reg1 - reg9 are regional binary variables | |
# binary religious variables: none, Protestant, Catholic, OtherC, OtherR | |
# binary party variables: Dems, Repubs, OthParty | |
# DEPENDENT VARIABLE: nowtot | |
#### BREAKOUT 1 #### | |
## Perform genetic matching with the following variables: | |
## Dems, Repubs, Christian, age, srvlng, demvote | |
## Tr = hasgirls | |
## Set pop.size = 20, set nboots = 250... complete the instructions below... | |
set.seed(2324); genout <- GenMatch(Tr = , X = cbind(), pop.size = , nboots = ) | |
mout <- Match(Tr = , X = cbind(), Weight.matrix = ) | |
MatchBalance( ~ , match.out = ) | |
## If you obtain really high balance, consider rerunning with M = 2 or 3... | |
## If/when you are satisfied by balance achieved, then rerun Match() with Y included | |
## and obtain the treatment effect estimate, the standard error, and the confidence interval. | |
mout <- Match(Y = , Tr = , | |
X = cbind(), Weight.matrix = ) | |
summary(mout) | |
## If you get to the end and have extra time, you can try changing X (remember to change | |
## it in GenMatch, in Match, and also in the formula for MatchBalance(). | |
## For example, you could try to control more finely for religion. You could try to control | |
## for race (e.g., binary "white" variable), or for region (reg1, reg2, etc.) | |
## IMPORTANT: SAVE YOUR mout object! | |
## Follow this protocol: save(object_name, file = "object_filename") to save to working directory | |
## e.g., if you have an object named mmm, save(mmm, file = "mmm") | |
## To retrieve your object, you would type: load("object_filename") |
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