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Studying Latent Criterion Validity for Complex Structure Measuring Instruments Using Latent Variable Modeling

机译:使用潜伏变量建模研究复杂结构测量仪器的潜在标准有效性

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摘要

Validity coefficients for multicomponent measuring instruments are known to be affected by measurement error that attenuates them, affects associated standard errors, and influences results of statistical tests with respect to population parameter values. To account for measurement error, a latent variable modeling approach is discussed that allows point and interval estimation of the relationship of an underlying latent factor to a criterion variable in a setting that is more general than the commonly considered homogeneous psychometric test case. The method is particularly helpful in validity studies for scales with a second-order factorial structure, by allowing evaluation of the relationship between the second-order factor and a criterion variable. The procedure is similarly useful in studies of discriminant, convergent, concurrent, and predictive validity of measuring instruments with complex latent structure, and is readily applicable when measuring interrelated traits that share a common variance source. The outlined approach is illustrated using data from an authoritarianism study.
机译:已知用于多组分测量仪器的有效系数受测量误差的影响,以衰减它们,影响相关的标准误差,并影响统计测试的结果与人口参数值。为了考虑测量误差,讨论了潜在的变量建模方法,其允许在比公共考虑的均匀心动测量测试用例更广泛的设置中的基础潜在的潜在潜像对标准变量的点和间隔估计。该方法通过允许评估二阶因子和标准变量之间的关系,对具有二阶阶段结构的尺度的有效性研究特别有利。该程序类似地用于研究具有复杂潜在结构的测量仪器的判别,收敛,并发和预测有效性,并且在测量共享共同差异源的相互关联的性状时,可以随时适用。使用来自威权主义研究的数据来说明概述的方法。

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