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Θεωρία Γενικευσιμότητας Πολλαπλών Επιπέδων×Επαληθευτική Παραγοντική Ανάλυση (Confirmatory Factor Analysis - CFA)×
ΠεδίοΨυχομετρίαΨυχομετρία
ΟικογένειαLatent structureLatent structure
Έτος προέλευσης1990s–2000s1969
ΔημιουργόςBrennan, R. L. and Shavelson, R. J. (extensions of Cronbach et al. G-theory to multilevel designs)Karl Gustav Jöreskog
ΤύποςMeasurement / variance decompositionHypothesis-testing latent variable model
Θεμελιώδης πηγήBriggs, D. C. & Wilson, M. (2003). An introduction to multidimensional measurement using Rasch models and generalizability theory. Journal of Applied Measurement, 4(1), 1–19. link ↗Jöreskog, K. G. (1969). A general approach to confirmatory maximum likelihood factor analysis. Psychometrika, 34(2), 183–202. DOI ↗
Εναλλακτικές ονομασίεςmultilevel G-theory, ML-GT, hierarchical generalizability theory, multilevel G-studyCFA, confirmatory FA, measurement model, restricted factor analysis
Συναφείς44
ΣύνοψηMultilevel generalizability theory extends classical G-theory to measurement designs where observations are nested within higher-level units — for example, items nested within raters, or students nested within classrooms. It decomposes score variance into components attributable to persons, facets, and their interactions across hierarchical levels, enabling precise estimation of measurement precision in complex, real-world assessment settings.Confirmatory factor analysis tests a researcher-specified factor structure against observed data. Unlike exploratory approaches, the researcher decides in advance which indicators load on which latent factor, and the model is evaluated by how closely the implied covariance matrix reproduces the sample covariance matrix. CFA is central to scale validation, construct validity assessment, and measurement invariance testing.
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ScholarGateΣύγκριση μεθόδων: Multilevel Generalizability Theory · Confirmatory factor analysis. Ανακτήθηκε στις 2026-06-18 από https://scholargate.app/el/compare