Literature DB >> 26977218

CORRECTING FOR MEASUREMENT ERROR IN LATENT VARIABLES USED AS PREDICTORS.

Lynne Steuerle Schofield1.   

Abstract

This paper represents a methodological-substantive synergy. A new model, the Mixed Effects Structural Equations (MESE) model which combines structural equations modeling and item response theory is introduced to attend to measurement error bias when using several latent variables as predictors in generalized linear models. The paper investigates racial and gender disparities in STEM retention in higher education. Using the MESE model with 1997 National Longitudinal Survey of Youth data, I find prior mathematics proficiency and personality have been previously underestimated in the STEM retention literature. Pre-college mathematics proficiency and personality explain large portions of the racial and gender gaps. The findings have implications for those who design interventions aimed at increasing the rates of STEM persistence among women and under-represented minorities.

Entities:  

Keywords:  Primary Structural equations models; STEM retention; higher education; item response theory

Year:  2015        PMID: 26977218      PMCID: PMC4787301          DOI: 10.1214/15-AOAS877

Source DB:  PubMed          Journal:  Ann Appl Stat        ISSN: 1932-6157            Impact factor:   2.083


  11 in total

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9.  Measurement Error in the AFQT in the NLSY79.

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10.  The More Things Change, the More They Stay the Same? Examining Gender Equality in Prior Achievement and Entry into STEM College Majors over Time.

Authors:  Catherine Riegle-Crumb; Barbara King; Eric Grodsky; Chandra Muller
Journal:  Am Educ Res J       Date:  2012-12-01
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