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Rotation to a Partially Specified Target Matrix in Exploratory Factor Analysis in Practice

机译:在实践中探索性因素分析中旋转到部分指定的目标矩阵

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摘要

The purpose of the current study was to explore the influence of the number of targets specified on the quality of exploratory factor analysis solutions with a complex underlying structure and incomplete substantive measurement theory. Previous research in this area was extended by (a) exploring this phenomenon in situations in which both the common factor model and the targeted pattern matrix contained specification errors and (b) comparing the performance of target rotation to an easier to use default rotation criterion (i.e., geomin) under conditions commonly observed in practice. A Monte Carlo study manipulated target error, number of targets, model error, overdetermination, communality, and sample size. Outcomes included bias (i.e., accuracy) and variability (i.e., stability) with regard to the rotated pattern matrix. The effects of target error were negligible for both accuracy and stability, while small effects were observed for the number of targets for both outcomes. Further, target rotation outperformed geomin rotation with regard to accuracy but generally performed worse than geomin rotation with regard to stability. These findings underscore the potential importance (or caution in the case of stability) of using extant, even if incomplete and somewhat inaccurate, substantive measurement theory to inform the rotation criterion in a non-mechanical way.
机译:当前研究的目的是探索具有复杂的基础结构和不完整的实质性测量理论的特定目标数目对探索性因素分析解决方案质量的影响。通过(a)在公因子模型和目标模式矩阵都包含规范误差的情况下探索该现象,以及(b)将目标旋转性能与更易于使用的默认旋转标准进行比较,可以扩展该领域的先前研究(即Geomin)在实践中通常观察到的条件下。蒙特卡洛研究对目标误差,目标数量,模型误差,过高确定性,共同性和样本量进行了处理。结果包括关于旋转图案矩阵的偏差(即准确性)和可变性(即稳定性)。目标误差对准确性和稳定性的影响可以忽略不计,而对于两种结局而言,目标数量的影响均很小。此外,就精度而言,目标旋转胜过土力工程处的旋转,但就稳定性而言,目标旋转通常要比土力工程处的旋转要差。这些发现强调了使用现存的潜在重要性(或在稳定性方面要谨慎),即使使用不完整且有些不准确的实质性测量理论以非机械的方式告知旋转标准。

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