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Glassman, Michael; Bartholomew, Mitchell; Jones, Travis – Educational Technology, 2011
The authors describe an Open Source approach to education. They define Open Source Education (OSE) as a teaching and learning framework where the use and presentation of information is non-hierarchical, malleable, and subject to the needs and contributions of students as they become "co-owners" of the course. The course transforms itself into an…
Descriptors: Web Sites, Electronic Publishing, Community Programs, Models
Parham, Jennifer R. – ProQuest LLC, 2009
According to industry representatives, computer science education needs to emphasize the processes involved in solving computing problems rather than their solutions. Most of the current assessment tools used by universities and computer science departments analyze student answers to problems rather than investigating the processes involved in…
Descriptors: Computer Science Education, Schemata (Cognition), Industry, Problem Solving
Peer reviewedSimon, Herbert A.; Reed, Stephen K. – Cognitive Psychology, 1976
A computer simulation model was fitted to human laboratory data for the Missionaries and Cannibals task to explain the effects upon problem performance of giving a hint and the effect of solving problems a second time after a successful solution has been achieved. (Author/DEP)
Descriptors: Computers, Individual Differences, Models, Problem Solving
Peer reviewedWeller, Herman G.; Hartson, H. Rex – Computers in Human Behavior, 1992
Describes human-computer interface needs for empowering environments in computer usage in which the machine handles the routine mechanics of problem solving while the user concentrates on its higher order meanings. A closed-loop model of interaction is described, interface as illusion is discussed, and metaphors for human-computer interaction are…
Descriptors: Computers, Interaction, Man Machine Systems, Metaphors
Chan, Nelson Wai – 1999
This paper describes research into the framework of Computer Analysis Relationship (CAR) and its methodology together with software such as Scientific Notebook in a teaching and learning problem-solving environment to support student investigation as well as to enhance student logical thinking. CAR aims to motivate students how to subdivide a…
Descriptors: Computers, Educational Technology, Higher Education, Mathematics Activities
Peer reviewedHolzman, Thomas G.; And Others – Memory and Cognition, 1976
Discusses a study which investigated whether a computer simulation model could suggest subroutines that were instructable and whether instruction on these subroutines could facilitate subjects' solutions to the problem task. (JM)
Descriptors: Computer Assisted Instruction, Computer Science, Computers, Information Processing
Peer reviewedDe Geus, Jan; And Others – Journal of the American Society for Information Science, 1982
Describes Nelson and Mitroff's concept of "Bothsides" thinking and a replication of their experiment to determine whether it is possible to promote this type of thinking in decision-making by using an adequate stimulus and, if so, to find out what an adequate stimulus is. A reference list is included. (JL)
Descriptors: Attitude Change, Attitude Measures, Cognitive Processes, Comparative Analysis
Mayer, Richard E. – 1982
This 5-section report summarizes the results of a project concerned with how novices learn to become creative educational computer users. Based on a cognitive analysis of elementary programming statements in BASIC and calculator language into conceptual units, the project builds on previous research on learning BASIC programming. A general…
Descriptors: Calculators, Computer Literacy, Computers, Learning Processes
Peer reviewedGreenspan, Donald – American Journal of Physics, 1977
Presents a completely arithmetic development of Newtonian dynamics in which all classical conservation laws are valid and all equations are in forms amenable to high-speed digital computer computation. (SL)
Descriptors: College Science, Computers, Higher Education, Kinetics
Peer reviewedRubinstein, Moshe F.; Firstenberg, Iris R. – New Directions for Teaching and Learning, 1987
The goal of problem-solving education should be to develop tools for thinking that will constitute a shell or framework of action procedures that can be applied on an ever-changing database. These tools come in the form of heuristics that can be modified and adapted to new situations. (Author/MLW)
Descriptors: Cognitive Processes, Computers, Critical Thinking, Heuristics
Peer reviewedSimon, Herbert A. – Journal of the American Society for Information Science, 1981
Reviews recent progress in modeling human cognition, in particular the use of computers in generating models. Topics covered include the information processing approach to cognition, problem solving, semantic memory, pattern induction, and learning and cognitive development. A 164-item reference list is attached. (JL)
Descriptors: Cognitive Development, Cognitive Processes, Computers, Concept Formation
Chemecology, 1991
The drawn ideas of inventors Edison and Bell are analyzed in a systematic way to help understand the inventive process and how inventors think. By storing sketches on a computer the researchers have been able to recreate the probable lines of reasoning used by the inventors. (KR)
Descriptors: College Science, Computers, Creativity, Engineering Education
Riley, Mary S. – 1985
This document presents hypotheses about how much understanding a user needs to perform skillfully using a computer or a computer program. A framework for characterizing user understanding is presented which includes three criteria for evaluating the representation generated during problem solving: (1) internal coherence--whether the components of…
Descriptors: Cognitive Development, Cognitive Mapping, Cognitive Processes, Computers
Coovert, Michael D.; And Others – 1988
Arguing that sufficient theory exists about the interplay between human information processing, computer systems, and the demands of various tasks to construct useful theories of human-computer interaction, this study presents a structural model of human-computer interaction and reports the results of various statistical analyses of this model.…
Descriptors: Computers, Decision Making, Hypothesis Testing, Intelligence
Chachra, Vinod; Heterick, Robert C. – CAUSE/EFFECT, 1982
The decision support system (DSS) environment, the functional requirements of a DSS, and the architectural requirements of the computer systems and communications network necessary to support a DSS are discussed. Changes in the computing environment that are necessary to implement decision support systems are suggested. (Author/MLW)
Descriptors: Computer Science, Computers, Data Processing, Decision Making

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