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Instructional Science | 5 |
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Riemersma, Fre | 1 |
Saroyan, Alenoush | 1 |
Stephens, Ray G. | 1 |
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Dillard, Jesse F.; And Others – Instructional Science, 1982
Reports on a study of human problem-solving behavior in which a technique called First-Order Cognitive Analysis was employed to analyze the tasks involved in certain accounting processes such as bookkeeping. A reference list, an appendix outlining the problem employed in the study, and an appendix on the task analysis are attached. (JL)
Descriptors: Accounting, Bookkeeping, Cognitive Processes, Models

Braune, Rolf; Foshay, Wellesley R. – Instructional Science, 1983
The proposed three-step strategy for research on human information processing--concept hierarchy analysis, analysis of example sets to teach relations among concepts, and analysis of problem sets to build a progressively larger schema for the problem space--may lead to practical procedures for instructional design and task analysis. Sixty-four…
Descriptors: Cognitive Processes, Instructional Design, Learning Theories, Literature Reviews

Stephens, Ray G.; And Others – Instructional Science, 1981
Describes the beginning of a study of the cognitive processes required for applying financial accounting knowledge to specific problem solving situations. Task analysis is used to describe the cognitive components of accounting, and algorithms for the tasks are appended. Eighteen references are listed. (Author/CHC)
Descriptors: Accounting, Algorithms, Behavioral Objectives, Cognitive Processes

Saroyan, Alenoush – Instructional Science, 1993
Describes differences in formative evaluation techniques between instructional designers and subject matter experts. Content analysis based on think-aloud data focusing on differences in task interpretation, problem identification and revision statements, and review strategies is discussed; use of instructional systems design models by…
Descriptors: Comparative Analysis, Content Analysis, Evaluation Methods, Formative Evaluation

Meijer, Joost; Riemersma, Fre – Instructional Science, 1986
Presents thinking-aloud protocols from secondary pupils solving arithmetic story and geometrical problems and analyzes their protocols by using interpretation models founded on a general problem-solving model. A word problem solving simulation is also used to further explicate processes pupils use to solve mathematical tasks. (Author/MBR)
Descriptors: Algorithms, Computer Simulation, Educational Theories, Foreign Countries