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Greeno, James G. – American Psychologist, 1980
Discusses (1) neobehaviorist theory and analysis of response probability, (2) discrete models of qualitative changes in knowledge and stages of processing, and (3) programmed simulations of the detailed structure of knowledge and cognitive processes. Comments on the prospects for developing significant new understandings of learning during the…
Descriptors: Cognitive Processes, Learning, Learning Theories, Problem Solving
Peer reviewed Peer reviewed
Kintsch, Walter; Greeno, James G. – Psychological Review, 1985
A processing model is presented that deals explicitly with both the text-comprehension and problem-solving aspects of word arithmetic problems. The model simulates construction of cognitive representations at various levels, distinguishes several information processing steps, and analyzes processing requirements that differ among types of…
Descriptors: Cognitive Processes, Comprehension, Language Processing, Models
Egan, Dennis E.; Greeno, James G. – 1970
The study concerned (1) identifying component processes of discovery and rule learning; (2) describing differences in learning outcomes produced by the two instructional methods, and; (3) optimizing learning. It was believed that understanding the effects of aptitude, instructional methods, and their interaction is important in the study of…
Descriptors: Aptitude, Cognitive Processes, Discovery Processes, Learning
Greeno, James G. – 1972
The purpose of this project was to develop new information and analyses that would contribute to development of a systematic understanding of cognitive structure, including its acquisition and utilization during problem solving. Experimental and theoretical work was done on three specific problems. (1) Studies of individual differences and effects…
Descriptors: Cognitive Development, Cognitive Processes, Individual Differences, Instruction
Greeno, James G.; Johnson, Walter – 1985
The relation of knowledge for solving problems to understanding of general principles in a subject-matter domain is discussed. Theoretical representations, called "conceptual competence," are presented to represent principles that are believed to be understood implicitly by individuals. Implications for problem-solving procedures can be…
Descriptors: Arithmetic, Cognitive Processes, Cognitive Structures, Elementary Secondary Education
Mayer, Richard E.; Greeno, James G. – 1974
In the pair of experiments reported here the authors investigated the relationship between meaningfulness of problem statements and subjects' use of these statements in problem-solving tasks. Subjects (96 university students) were required to memorize meaningful formulae such as "volume = area x height" or corresponding symbolic formulae such as…
Descriptors: Cognitive Processes, Higher Education, Information Processing, Instruction
Greeno, James G. – 1983
Discussed is one "quite general" attribute that can differentiate problem representations: the kinds of entities that are included -- the cognitive objects that the system can reason about in a relatively direct way, and that are included continuously in the representation. The ontology of a domain is significant for four reasons. First,…
Descriptors: Cognitive Processes, Educational Research, Elementary Secondary Education, Learning Theories
Greeno, James G. – 1984
In the research described in this document, the goal was to develop definite theoretical characterizations of understanding in a specific domain of problems. Some performance that provides persuasive evidence of understanding was chosen, and hypotheses about cognitive structures and processes that cause the performance to occur were developed.…
Descriptors: Cognitive Processes, Educational Research, Geometry, Higher Education
Greeno, James G. – 1979
Thinking-aloud protocols of human problem solvers working on geometry problems are presented and discussed. Protocols were obtained from six individuals working on nine different problems in which constructions were used. Nineteen protocols are presented with annotation and discussion, and other protocols are summarized. The primary purpose of the…
Descriptors: Abstract Reasoning, Cognitive Processes, Cognitive Tests, Educational Research
Greeno, James G.; And Others – 1979
Problems were presented to 13 university students in which letters were to be added or subtracted (e.g., B + D = ? or F - ? = D). After each problem, each subject gave a retrospective protocol indicating the way in which the problem was solved. Models of performance by each subject in each experimental session shared major properties; choices by…
Descriptors: Abstract Reasoning, Algebra, Arithmetic, Cognitive Processes
Greeno, James G.; And Others – 1985
Research was conducted investigating properties of skill in learning, in the domain of elementary algebra. Thinking-aloud protocols indicate that early knowledge of the subjects studied was fragmentary, rather than involving systematically flawed procedures. Computational models, developed to simulate observed errors, focused on the role of…
Descriptors: Algebra, Cognitive Processes, Elementary Secondary Education, Error Patterns
Greeno, James G.; And Others – 1979
Hierarchically organized knowledge about actions has been postulated to explain planning in problem solving. Perdix, a simulation of problem solving in geometry with schematic planning knowledge, is described. Perdix' planning knowledge enables it to augment the problem space it is given by constructing auxiliary lines. The planning system also…
Descriptors: Abstract Reasoning, Cognitive Processes, Cognitive Tests, Educational Research
Chaiklin, Seth; Greeno, James G. – 1981
The uses of verbal rules in solving arithmetic problems are presented. Thirty-six problems were used in individual testing of five students who were enrolled in a remedial mathematics course at a community college. Two or three weeks prior to the individual exams, the students had been tested in their class on the material. The study indicated…
Descriptors: Arithmetic, Basic Skills, Cognitive Processes, College Mathematics
Greeno, James G.; And Others – 1986
Research in this project studied cognitive processes involved in understanding and solving problems used in instruction in the domain of mathematics, and explored implications of these cognitive analyses for the design of instruction. Three general issues were addressed: knowledge required for understanding problems, knowledge of the conditions…
Descriptors: Cognitive Ability, Cognitive Processes, Computation, Convergent Thinking