Descriptor
Source
| Instructional Science | 12 |
Author
| Hannafin, Michael J. | 2 |
| Bateman, Helen | 1 |
| Beyth-Marom, Ruth | 1 |
| Biswas, Gautam | 1 |
| Bransford, John | 1 |
| Crews, Thaddeus | 1 |
| De Jong, Ton | 1 |
| Dekel, Shlomit | 1 |
| Dijkstra, Sanne | 1 |
| Goldman, Susan R. | 1 |
| Gourgey, Annette F. | 1 |
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Publication Type
| Journal Articles | 12 |
| Reports - Descriptive | 12 |
| Information Analyses | 2 |
| Opinion Papers | 2 |
| Reports - Research | 2 |
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| Researchers | 3 |
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Peer reviewedScandura, Joseph M. – Instructional Science, 2001
Presents the current status and new perspectives on the Structured Learning Theory (SLT), with special consideration given to how SLT has been influenced by recent research in software engineering. Topics include theoretical constructs; content domains; structural analysis; cognition; assessing behavior potential; and teaching and learning issues,…
Descriptors: Behavior Development, Cognitive Processes, Computer Software Development, Learning Theories
Peer reviewedYoung, Michael F.; And Others – Instructional Science, 1997
Argues that the key distinction of a situated approach to studying intelligent behavior is not the method used but the focus of the investigation, specifically the unit of analysis. Discusses contemporary approaches to assessment, collaborative problem solving as an assessment context, situated assessment, intentional dynamics, and interaction as…
Descriptors: Behavioral Science Research, Context Effect, Cooperation, Educational Assessment
Peer reviewedDijkstra, Sanne – Instructional Science, 1997
Constructivist theory argues that students construct knowledge for themselves and that each knows the world in a different way. The problem for education is how students can construct an "objectified" knowledge. Outlines an integrative framework for the description of information and problem-solving procedures and a problem-solving…
Descriptors: Cognitive Development, Cognitive Structures, Constructivism (Learning), Instructional Design
Peer reviewedLieberman, Henry – Instructional Science, 1986
Describes a programming environment called Tinker, in which a beginning programmer presents examples to the machine, distinguishing accidental and essential aspects of the examples. Examples of programming in Tinker are presented in which programmers demonstrate how to handle specific examples and the machine formulates a procedure for handling…
Descriptors: Artificial Intelligence, Decision Making, Educational Environment, Feedback
Peer reviewedVan Joolingen, Wouter R.; De Jong, Ton – Instructional Science, 1997
This article describes and tests a theory of scientific discovery learning based on the Scientific Discovery as Dual Search (SDDS) model. A study of 22 university chemistry students determined that conditions for performing a search operation in hypothesis space include sufficient knowledge of the search operation and reasons for choosing a…
Descriptors: Chemistry, Discovery Learning, Higher Education, Information Seeking
Peer reviewedBeyth-Marom, Ruth; Dekel, Shlomit – Instructional Science, 1983
Describes the development of a curriculum to improve problem- solving ability when faced with uncertainty by (1) encouraging students to examine their thought processes, (2) presenting fallacious arguments, and (3) providing better tools for decision making. Relevant psychological research, some problems of teacher training, and a small-scale…
Descriptors: Abstract Reasoning, Cognitive Processes, Curriculum Development, Decision Making
Peer reviewedLand, Susan M.; Hannafin, Michael J. – Instructional Science, 1997
Student-centered learning environments have been acclaimed as a means to support the teaching of divergent reasoning, problem solving, and critical thinking. Reviews and analyzes research and theory related to technology-enhanced student-centered learning environments. Provides an extensive table outlining examples, functions, and supporting…
Descriptors: Critical Thinking, Divergent Thinking, Educational Environment, Educational Research
Peer reviewedOhlsson, Stellan – Instructional Science, 1986
Research on intelligent tutoring systems is discussed from the point of view of providing moment-by-moment adaptation of content and form of instruction to the changing cognitive needs of individual learners. Implications of this goal for cognitive diagnosis, subject matter analysis, teaching tactics, and teaching strategies are analyzed. (Author)
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Simulation, Diagnostic Teaching
Peer reviewedShaw, Robert E.; And Others – Instructional Science, 1997
Proposes a theoretical framework for designing online-situated assessment tools for multimedia instructional systems. Uses a graphic method based on ecological psychology to monitor student performance through a learning activity. Explores the method's feasibility in case studies describing instructional systems teaching critical-thinking and…
Descriptors: Case Studies, Critical Thinking, Dentistry, Educational Assessment
Peer reviewedGourgey, Annette F. – Instructional Science, 1998
Describes self-regulatory processes that promote achievement in the basic skills of reading (clarifying purpose, understanding meanings, drawing inferences, looking for relationships, reformulating text) and mathematical problem solving (clarifying problem goals, understanding concepts, applying knowledge, monitoring progress). Experiences in…
Descriptors: Academic Achievement, Basic Skills, Higher Education, Learning Processes
Peer reviewedGoldman, Susan R.; Zech, Linda K.; Biswas, Gautam; Noser, Tom; Bateman, Helen; Bransford, John; Crews, Thaddeus; Moore, Allison; Nathan, Mitchell; Owens, Stephen – Instructional Science, 1999
Examines mathematics problem solving in a computer software environment using graphical representations of the results of simulations with adolescent students. Discusses the strengths and limitations of inferring goals and plans, the use of verbal protocols, and ways for computer-based learning environments to scaffold acquisition of domain…
Descriptors: Adolescents, Cognitive Processes, Computer Assisted Instruction, Computer Graphics
Peer reviewedHannafin, Michael J.; Hughes, Curtis W. – Instructional Science, 1986
Focuses on presumed functions of orienting activities, such as advance organizers, pre-questions, and statements of performance expectations, as well as the implications of such functions for the design of computer-based interactive video (CBIV). Application of empirically founded principles in design and production of CBIV is described.…
Descriptors: Advance Organizers, Behavioral Objectives, Computer Assisted Instruction, Concept Teaching


