Information Technology Reference
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Card, S. K., Moran, T. P., & Newell, A. (1980). The keystroke-level model for user performance
time with interactive systems. Communications of the ACM, 23(7), 396-410.
Card, S. K., Moran, T. P., & Newell, A. (1983). The psychology of human-computer interaction.
Hillsdale, NJ: Erlbaum.
Casey, S. M. (1998). Set phasers on stun: And other true tales of design, technology, and human
error. Santa Barbara, CA: Aegean.
Casey, S. M. (2006). The Atomic Chef: And other true tales of design, technology, and human
error. Santa Barbara, CA: Aegean.
Chipman, S. F., & Kieras, D. E. (2004). Operator centered design of ship systems. In Engineering
the Total Ship Symposium. NIST, Gaithersburg, MD. American Society of Naval Engineers.
Retrieved March 10, 2014, from http://handle.dtic.mil/100.2/ADA422107
Crandall, B., Klein, G., & Hoffman, R. R. (2006). Working minds: A practitioner's guide to
cognitive task analysis. Cambridge, MA: MIT Press.
Diaper, D. (2004). Understanding task analysis. In D. Diaper & N. Stanton (Eds.), The handbook
of task analysis for human-computer interaction (pp. 5-47). Mahwah, NJ: LEA.
Ericsson, K. A., & Simon, H. A. (1993). Protocol analysis: Verbal reports as data (2nd ed.).
Cambridge, MA: MIT Press.
Fitts, P. M. (1951). Human engineering for an effective air navigation and traffic control system.
Washington, DC: National Research Council.
Freed, M., & Remington, R. (1998). A conceptual framework for predicting error in complex
human-machine
environments.
In
Proceedings
of
the
20th
Annual
Conference
of
the
Cognitive Science Society (pp. 356-361). Mahwah, NJ: Erlbaum.
Gray, W. D., John, B. E., & Atwood, M. E. (1992). The precis of project ernestine or an overview
of a validation of GOMS. In Proceedings of the CHI'92 Conference on Human Factors in
Computer Systems. New York, NY: ACM Press.
John, B. E., & Kieras, D. E. (1996a). The GOMS family of user interface analysis techniques:
Comparison
and
contrast.
ACM
Transactions
on
Computer-Human
Interaction,
3(4),
320-351.
John, B. E., & Kieras, D. E. (1996b). Using GOMS for user interface design and evaluation:
Which technique? ACM Transactions on Computer-Human Interaction, 3(4), 287-319.
Kieras, D. E. (1999). A guide to GOMS model usability evaluation using GOMSL and GLEAN3:
AI Lab, University of Michigan. Available from www.ftp.eecs.umich.edu/people/kieras
Kieras, D. E., & Polson, P. G. (1985). An approach to the formal analysis of user complexity.
International Journal of Man-Machine Studies, 22, 365-394.
Kirwan, B., & Ainsworth, L. K. (1992). A guide to task analysis. London, UK: Taylor & Francis.
Klein, G., Calderwood, R., & MacGregor, D. (1989). Critical decision method for eliciting
knowledge. IEEE Transactions on Systems, Man, and Cybernetics, 19, 462-472.
Monk, A. F. (1998). Lightweight techniques to encourage innovative user interface design. In L.
Wood (Ed.), User interface design: Bridging the gap between user requirements and design
(pp. 109-129). Boca Raton, FL: CRC Press.
Nichols, S., & Ritter, F. E. (1995). A theoretically motivated tool for automatically generating
command aliases. In Proceedings of the CHI'95 Conference on Human Factors in Computer
Systems (pp. 393-400). New York, NY: ACM.
Nielsen, J., & Phillips, V. L. (1993). Estimating the relative usability of two interfaces: Heuristic,
formal, and empirical methods compared. In Proceedings of InterCHI '93 (pp. 214-221).
New York, NY: ACM.
Paik, J., Kim, J. W., Ritter, F. E., Morgan, J. H., Haynes, S. R., & Cohen, M. A. (2010). Building
large learning models with Herbal. In D. D. Salvucci & G. Gunzelmann (Eds.), Proceedings
of ICCM: 2010- Tenth International Conference on Cognitive Modeling (pp. 187-191).
Pettitt, M., Burnett, G., & Stevens, A. (2007). An extended keystroke level model (KLM) for
predicting the visual demand of in-vehicle information systems. In Proceedings of the
SIGCHI Conference on Human Factors in Computing Systems (pp. 1515-1524). ACM.
Ritter, F. E., & Bibby, P. A. (2008). Modeling how, when, and what learning happens in a
diagrammatic reasoning task. Cognitive Science, 32, 862-892.
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