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Journal Article
Kaplan, M., de la Torre, J., & Barrada, J. R.. (2015). New Item Selection Methods for Cognitive Diagnosis Computerized Adaptive Testing. Applied Psychological Measurement, 39, 167-188. doi:10.1177/0146621614554650
Choi, S. W., Grady, M. W., & Dodd, B. G.. (2011). A New Stopping Rule for Computerized Adaptive Testing. Educational and Psychological Measurement, 71, 37-53. doi:10.1177/0013164410387338
Choi, S. W., Grady, M. W., & Dodd, B. G.. (2010). A new stopping rule for computerized adaptive testing. Educational and Psychological Measurement, 70, 1-17. presented at the Dec 1.
de Ayala, R. J. (1992). The nominal response model in computerized adaptive testing. Applied Psychological Measurement, 16, 327-343.
De Ayals, R. J. (1992). The Nominal Response Model in Computerized Adaptive Testing. Applied Psychological Measurement, 15, 327-343.
PDF icon v16n4p327.pdf (1.45 MB)
DeMars, C. E. (2022). The (non)Impact of Misfitting Items in Computerized Adaptive Testing. Journal of Computerized Adaptive Testing, 9(2). doi:10.7333/2211-0902008
PDF icon v13n2p129.pdf (1.73 MB)
PDF icon v13n2p129.pdf (1.73 MB)
Kim, J., Chung, H., Dodd, B. G., & Park, R.. (2012). Panel Design Variations in the Multistage Test Using the Mixed-Format Tests. Educational and Psychological Measurement, 72, 574-588. doi:10.1177/0013164411428977
Chen, S. - Y., & Doong, S. H.. (2008). Predicting item exposure parameters in computerized adaptive testing. British Journal of Mathematical and Statistical Psychology, 61, 75-91. presented at the May.
Doebler, A. (2012). The Problem of Bias in Person Parameter Estimation in Adaptive Testing. Applied Psychological Measurement, 36, 255-270. doi:10.1177/0146621612443304
Luo, X., Kim, D., & Dickison, P.. (2017). Projection-Based Stopping Rules for Computerized Adaptive Testing in Licensure Testing. Applied Psychological MeasurementApplied Psychological Measurement, 42(4), 275 - 290. presented at the 2018/06/01. Retrieved from https://doi.org/10.1177/0146621617726790
Wang, C., Fan, Z., Chang, H. - H., & Douglas, J. A.. (2013). A Semiparametric Model for Jointly Analyzing Response Times and Accuracy in Computerized Testing. Journal of Educational and Behavioral Statistics, 38, 381-417. doi:10.3102/1076998612461831
Davis, L. L. (2004). Strategies for Controlling Item Exposure in Computerized Adaptive Testing With the Generalized Partial Credit Model. Applied Psychological Measurement, 28, 165-185. doi:10.1177/0146621604264133
Davis, L. L. (2003). Strategies for controlling item exposure in computerized adaptive testing with polytomously scored items. Dissertation Abstracts International: Section B: The Sciences & Engineering, 64, 458.
Deng, H., Ansley, T., & Chang, H. - H.. (2010). Stratified and Maximum Information Item Selection Procedures in Computer Adaptive Testing. Journal of Educational Measurement, 47, 202–226. doi:10.1111/j.1745-3984.2010.00109.x
Henson, R. K., & Douglas, J.. (2005). Test construction for cognitive diagnosis. Applied Psychological Measurement, 29, 262-277.
Miscellaneous
Wright, B. D., & Douglas, G. A.. (1975). Best test design and self-tailored testing (Research Memorandum No 19). Chicago: University of Chicago, Department of Education, Statistical Laboratory.
Stenson, H., Graves, P., Gardiner, J., & Dally, L.. (1991). Collected works on the legal aspects of computerized adaptive testing. Chicago, IL: National Council of State Boards of Nursing, Inc.
De Witt, J. J., & Weiss, D. J.. (1974). A computer software system for adaptive ability measurement (Research Report 74-1). Minneapolis MN: University of Minnesota, Department of Psychology, Computerized Adaptive Testing Laboratory.
PDF icon de74-1.pdf (2.67 MB)
Hogan, P. F., Dall, T., & McBride, J. R.. (1996). Preliminary cost-effectiveness analysis of alternative ASVAB testing concepts at MET sites. Interim report to Defense Manpower Data Center. Fairfax, VA: Lewin-VHI, Inc.

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