Export 151 results:
Filters: First Letter Of Keyword is P  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
E
Thompson, N., & Stoeger, J.. (2017). Evaluation of Parameter Recovery, Drift, and DIF with CAT Data. In IACAT 2017 Conference. presented at the 08/2017, Niigata, Japan: Niigata Seiryo University. Retrieved from https://drive.google.com/open?id=1F7HCZWD28Q97sCKFIJB0Yps0H66NPeKq
Thompson, N., & Stoeger, J.. (2017). Evaluation of Parameter Recovery, Drift, and DIF with CAT Data. In IACAT 2017 Conference. presented at the 08/2017, Niigata, Japan: Niigata Seiryo University. Retrieved from https://drive.google.com/open?id=1F7HCZWD28Q97sCKFIJB0Yps0H66NPeKq
Buck, D. E. (2000). An examination of the reliability and validity of performance ratings made using computerized adaptive rating scales. Dissertation Abstracts International: Section B: The Sciences and Engineering, 61, 570.
Smith, R. W. (2000). An exploratory analysis of item parameters and characteristics that influence item level response time. Dissertation Abstracts International Section A: Humanities and Social Sciences, 61, 1812.
I
Reckase, M. D. (2024). The Influence of Computerized Adaptive Testing on Psychometric Theory and Practice. Journal of Computerized Adaptive Testing, 11(1). doi:10.7333/2403-1101001
Chang, H. - H., & Guo, R.. (2017). Item Parameter Drifting and Online Calibration. In IACAT 2017 Conference. presented at the 08/2017, Niigata, Japan: Niigata Seiryo University.
Reise, S. P., & Waller, N. G.. (2009). Item response theory and clinical measurement. Annual Review of Clinical Psychology, 5, 27-48.
Reise, S. P., & Waller, N. G.. (2009). Item response theory and clinical measurement. Annual Review of Clinical Psychology, 5, 27-48.
M
Veldkamp, B. P., van der Linden, W. J., & Ariel, A.. (2002). Mathematical-programming approaches to test item pool design (No. RR 02-09) (pp. 93-108). Twente, The Netherlands: University of Twente, Faculty of Educational Science and Technology.
Cheng, Y., & Chang, H. - H.. (2009). The maximum priority index method for severely constrained item selection in computerized adaptive testing. British Journal of Mathematical and Statistical Psychology, 62, 369-83. presented at the May.
Cheng, Y., & Chang, H. - H.. (2009). The maximum priority index method for severely constrained item selection in computerized adaptive testing. British Journal of Mathematical and Statistical Psychology, 62, 369-83. presented at the May.
Cella, D., & Nowinski, C. J.. (2002). Measuring quality of life in chronic illness: the functional assessment of chronic illness therapy measurement system. Archives of Physical Medicine and Rehabilitation, 83, S10-7. presented at the Dec.
Bontempo, B. D. (2011). Moving beyond Efficiency to Allow CAT to Provide Better Diagnostic Information. In Annual Conference of the International Association for Computerized Adaptive Testing. presented at the 10/2011.
PDF icon IACAT 2011 Bontempo - CAT for Diagnostic Information.pdf (283 KB)
PDF icon ga02812.pdf (131.16 KB)
PDF icon ga02812.pdf (131.16 KB)
P
Taherbhai, H., & Seo, D.. (2013). The Philosophical Aspects of IRT Equating: Modeling Drift to Evaluate Cohort Growth in Large-Scale Assessments. Educational Measurement: Issues and Practice, 32, 2–14. doi:10.1111/emip.12000
Sireci, S. G., & Clauser, B. E.. (2001). Practical issues in setting standards on computerized adaptive tests. In Setting performance standards: Concepts, methods, and perspectives (pp. 355-369). Mahwah, N.J. USA: Lawrence Erlbaum Associates, Inc.
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.

Pages