ht_many_prop_sim <- function(y, x, x_name, y_name, seed, nsim,
show_var_types, show_summ_stats, show_res,
show_eda_plot, show_inf_plot){
length(x)
length(y)
# set seed
if(!is.null(seed)){ set.seed(seed) }
# chi-sq test of independence
res <- chisq.test(x, y, correct = FALSE, simulate.p.value = TRUE, B = min(2000, nsim))
stat <- res$statistic
# print variable types
if(show_var_types == TRUE){
n_x_levels <- length(levels(x))
n_y_levels <- length(levels(y))
cat(paste0("Response variable: categorical (", n_y_levels, " levels) \n"))
cat(paste0("Explanatory variable: categorical (", n_x_levels, " levels) \n"))
}
# print summary statistics
if(show_summ_stats == TRUE){
cat("Observed:\n")
print(res$observed)
cat("\n")
cat("Expected:\n")
print(res$expected)
cat("\n")
}
# print results
if(show_res == TRUE){
cat(paste0("H0: ", x_name, " and ", y_name, " are independent\n"))
cat(paste0("HA: ", x_name, " and ", y_name, " are dependent\n"))
cat(paste0("chi_sq = ", round(as.numeric(stat), 4),
", p_value = ", round(res$p.value, 4), "\n"))
}
# eda_plot
d_eda <- data.frame(y = y, x = x)
n_fill_values <- length(levels(y))
fill_values <- grDevices::colorRampPalette(c("#1FBEC3", "#C7EEF0"))( n_fill_values )
eda_plot <- ggplot2::ggplot(data = d_eda, ggplot2::aes(x = x, fill = y), environment = environment()) +
ggplot2::geom_bar(position = "fill") +
ggplot2::scale_fill_manual(values = fill_values) +
ggplot2::xlab(x_name) +
ggplot2::ylab("") +
ggplot2::ggtitle("Sample Distribution") +
ggplot2::guides(fill = ggplot2::guide_legend(title = y_name))
# print plots
if(show_eda_plot){ print(eda_plot) }
if(show_inf_plot){ warning("No inference plot available.") }
# return
return(list(chi_sq = as.numeric(stat), p_value = res$p.value))
}
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