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Yao, L. (2013). Comparing the Performance of Five Multidimensional CAT Selection Procedures With Different Stopping Rules. Applied Psychological Measurement, 37, 3-23. doi:10.1177/0146621612455687
Yao, L., Pommerich, M., & Segall, D. O.. (2014). Using Multidimensional CAT to Administer a Short, Yet Precise, Screening Test. Applied Psychological Measurement, 38, 614-631. doi:10.1177/0146621614541514
Yang, L., & Reckase, M. D.. (2020). The Optimal Item Pool Design in Multistage Computerized Adaptive Tests With the p-Optimality Method. Educational and Psychological Measurement, 80, 955-974. doi:10.1177/0013164419901292
Yang, X., Poggio, J. C., & Glasnapp, D. R.. (2006). Effects of Estimation Bias on Multiple-Category Classification With an IRT-Based Adaptive Classification Procedure. Educational and Psychological Measurement, 66, 545-564. doi:10.1177/0013164405284031
Yang, J., Chang, H. - H., Tao, J., & Shi, N.. (2020). Stratified Item Selection Methods in Cognitive Diagnosis Computerized Adaptive Testing. Applied Psychological Measurement, 44, 346-361. doi:10.1177/0146621619893783
Yan, D., Lewis, C., & Stocking, M.. (1998). Adaptive testing without IRT. In Paper presented at the annual meeting of the National Council on Measurement in Education. San Diego CA.
Yan, D., Lewis, C., & Stocking, M.. (2004). Adaptive Testing With Regression Trees in the Presence of Multidimensionality. Journal of Educational and Behavioral Statistics, 29, 293-316. doi:10.3102/10769986029003293
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Xu, H., Fang, G., Chen, Y., Liu, J., & Ying, Z.. (2018). Latent Class Analysis of Recurrent Events in Problem-Solving Items. Applied Psychological Measurement, 42, 478-498. doi:10.1177/0146621617748325
Xu, X., Chang, H. - H., & Douglas, J.. (2003). A simulation study to compare CAT strategies for cognitive diagnosis. In Paper presented at the annual meeting of the National Council on Measurement in Education. Chicago IL.
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Xiong, X. (2018). A Hybrid Strategy to Construct Multistage Adaptive Tests. Applied Psychological Measurement, 42, 630-643. doi:10.1177/0146621618762739
Xing, D., & Hambleton, R. K.. (2002). Impact of test design, item quality and item bank size on the psychometric properties of computer-based credentialing exams. In Paper presented at the meeting of National Council on Measurement in Education. New Orleans.
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Xing, D., & Hambleton, R. K.. (2001). Impact of several computer-based testing variables on the psychometric properties of credentialing examinations. In Paper presented at the Annual Meeting of the National Council on Measurement in Education. Seattle WA.
Xiao, B. (1989). Golden section search strategies for computerized adaptive testing. In Paper presented at the Fifth International Objective Measurement Workshop. Berkeley CA.
Xiao, B. (1990). Dichotomous search strategies for computerized adaptive testing. In Paper presented at the annual meeting of the American Educational Research Association.
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Wyse, A. E., & Albano, A. D.. (2015). Considering the Use of General and Modified Assessment Items in Computerized Adaptive Testing. Applied Measurement in Education, 28(2). doi:http://dx.doi.org/10.1080/08957347.2014.1002921
Wu, I. L. (2001). A new computer algorithm for simultaneous test construction of two-stage and multistage testing. Journal of Educational and Behavioral Statistics, 26, 180-198.
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.
Wouda, J. T., & Eggen, T.. (2009). Computerized classification testing in more than two categories by using stochastic curtailment. In . D. J. Weiss (Ed.), Proceedings of the 2009 GMAC Conference on Computerized Adaptive Testing.
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Wouda, J. T., & Eggen, T.. (2009). Constrained item selection using a stochastically curtailed SPRT. In . D. J. Weiss (Ed.), Proceedings of the 2009 GMAC Conference on Computerized Adaptive Testing.
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Wood, R. (1976). Adaptive testing: A Bayesian procedure for the efficient measurement of ability. Programmed Learning and Educational Technology, 13(2), 36.
Wood, R. L. (1973). Response-contingent testing. Review of Educational Research, 43, 529-544.
Wood, R. L. (1969). The efficacy of tailored testing. Educational Research, 11, 219-222.
Wood, R. L. (1971). Computerized adaptive sequential testing. Unpublished doctoral dissertation, University of Chicago.
Wolfe, J. H., & Larson, G. E.. (1990). Generative adaptive testing with digit span items. San Diego, CA: Testing Systems Department, Navy Personnel Research and Development Center.
Wolfe, J. H. (1986). Computerized testing technology. Advances in Reading/Language Research, 4, 71-78.
Wise, S. L. (1999). The rationale and principles of stratum scoring. In Paper presented at the annual meeting of the National Council on Measurement in Education. Montreal, Canada.
Wise, S. L. (1995). Item review and answer changing in computerized adaptive tests. In Paper presented at the Third European Conference on Psychological Assessment. Trier, Germany.
Wise, S. L., Kingsbury, G. G., & Webb, N. L.. (2015). Evaluating Content Alignment in Computerized Adaptive Testing. Educational Measurement: Issues and Practice, 34(4). doi:http://dx.doi.org/10.1111/emip.12094
Wise, S. L. (1999). Comparison of stratum scored and maximum likelihood scoring. In Paper presented at the annual meeting of the National Council on Measurement in Education. Montreal, Canada.
Wise, L. L., Curran, L. T., & McBride, J. R.. (1997). CAT-ASVAB cost and benefit analyses. In . W. A. Sands, B. K. Waters, and J. R. McBride (Eds.), Computer adaptive testing: From inquiry to operation (pp. 227-236). Washington, DC: American Psychological Association.
Wise, S. L., & G. Kingsbury, G.. (2016). Modeling Student Test-Taking Motivation in the Context of an Adaptive Achievement Test. Journal of Educational Measurement, 53, 86–105. doi:10.1111/jedm.12102
Wise, S. L. (1994). Understanding self-adapted testing: The perceived control hypothesis. Applied Measurement in Education, 7, 15-24.
Wise, S. L. (2014). The Utility of Adaptive Testing in Addressing the Problem of Unmotivated Examinees. Journal of Computerized Adaptive Testing, 2(1), 1-17. doi:10.7333/1401-02010001
Wise, S. L., Roos, L. L., & Plake, B. S.. (1994). Comparing computerized adaptive and self-adapted tests: The influence of examinee achievement locus of control. In Paper presented at the annual meeting of the National Council on Measurement in Education. New Orleans LA.
Wise, S. L. (1997). Overview of practical issues in a CAT program. In Paper presented at the annual meeting of the National Council on Measurement in Education. Chicago IL.
Wise, S. L., Ponsoda, V., & Olea, J.. (2002). Self-adapted testing: An overview. International Journal of Continuing Engineering Education and Life-Long Learning, 12, 107-122.
Wise, S. L. (2011). From Reliability to Validity: Expanding Adaptive Testing Practice to Find the Most Valid Score for Each Test Taker. In Annual Conference of the International Association for Computerized Adaptive Testing. presented at the 10/2011.
PDF icon IACAT 2011 Wise From Reliability to Validity.pdf (619.18 KB)
Wise, S. L., Kingsbury, G. G., & Houser, R. L.. (1993). An investigation of restricted self-adapted testing. In Paper presented at the annual meeting of the National Council on Measurement in Education. Atlanta GA.
Wise, S. L. (1997). Examinee issues in CAT. In Paper presented at the annual meeting of the National Council on Measurement in Education. Chicago IL.
Wise, S. L. (2023). Expanding the Meaning of Adaptive Testing to Enhance Validity. Journal of Computerized Adaptive Testing, 10(2), 22-31. doi:10.7333/2305-1002022
Wise, S. L., Freeman, S. A., Finney, S. J., Enders, C. K., & Severance, D. D.. (1997). The accuracy of examinee judgments of relative item difficulty: Implication for computerized adaptive testing. In Paper presented at the annual meeting of the National Council on Measurement in Education. Chicago.
Wise, S. L. (1996). A critical analysis of the argument for and against item review in computerized adaptive testing. In Paper presented at the annual meeting of the National Council on Measurement in Education. New York.

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