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Report Technical Methods Report

Statistical Theory for the RCT-YES Software: Design-Based Causal Inference for RCTs

NCEE
Author(s):
Peter Z. Schochet: Mathematica Policy Research, Inc.
Publication date:
June 2015
Publication number:
NCEE 20154011

Summary

This Second Edition report updates the First Edition published in June 2015 that presents the statistical theory underlying the RCT-YES software that estimates and reports impacts for RCTs for a wide range of designs used in social policy research. The preface to the new report summarizes the updates from the previous version. The report discusses a unified, non-parametric design-based approach for impact estimation using the building blocks of the Neyman-Rubin-Holland causal inference model that underlies experimental designs. This approach differs from the more model-based impact estimation methods that are typically used in education research. The report discusses impact and variance estimation, asymptotic distributions of the estimators, hypothesis testing, the inclusion of baseline covariates to improve precision, the use of weights, subgroup analyses, baseline equivalency analyses, and estimation of the complier average causal effect parameter.

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Technical Methods Report
NCEE

Statistical Theory for the RCT-YES Software: Design-Based Causal Inference for RCTs

By: Peter Z. Schochet: Mathematica Policy Research, Inc.
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