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Murphy, Michelle Pauley; Hung, Woei – TechTrends: Linking Research and Practice to Improve Learning, 2023
One hundred years ago, Paul Weiss and Ludwig von Bertalanffy independently proposed that living organisms interact with their environment through systems. In the century that has followed, systems thinking and modeling have grown in tandem with discovery of the vast complexity of the universe at microscopic through astronomic levels. As our…
Descriptors: Systems Approach, Cognitive Processes, Artificial Intelligence, Learning Processes
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Højgaard, Tomas; Hansen, Rune – International Journal of Mathematical Education in Science and Technology, 2022
This article is about utilizing the process of building and exploiting models as a framework for inquiry in mathematics education research. We introduce and discuss a model of such a process and compare this model with key methodological features of design research in mathematics education. We argue that despite several communalities, educational…
Descriptors: Mathematical Models, Mathematics Education, Educational Research, Research Methodology
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Anis Shofatun; Elly Herniani; Dinny Mardiani – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Climate change in coastal areas is a complex problem that involves value systems and requires various scientific disciplines. Integration of Science, Technology, Engineering and Mathematics (STEM) approach is needed in learning so that it can train students to think holistically, structured and systematically. This research was carried out with…
Descriptors: Instructional Design, STEM Education, Lesson Plans, Worksheets
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Eberbach, Catherine; Hmelo-Silver, Cindy E.; Jordan, Rebecca; Taylor, Joseph; Hunter, Roberta – Science Education, 2021
This study examines how middle school students develop an increasingly coherent understanding of aquatic ecosystems. As part of a broader design research study that used Structure-Behavior-Function (SBF) theory as an organizing conceptual representation, we created two instructional units that focused on pond and aquarium environments. We coded…
Descriptors: Water, Ecology, Earth Science, Middle School Students
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Arrington, T. Logan; Moore, Alison L.; Bagdy, Lauren M. – TechTrends: Linking Research and Practice to Improve Learning, 2021
This article presents the results of a collective case study exploring how K12 practitioners perceive the interaction of systems thinking, creativity, and learning from failure within their professional practice. In order to identify K12 practitioners who were well-versed in systems thinking, we targeted students within an instructional design and…
Descriptors: Teacher Attitudes, Case Studies, Creativity, Kindergarten
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Soylu, Firat; Holbert, Nathan; Brady, Corey; Wilensky, Uri – Journal of Interactive Learning Research, 2017
In this paper we present a learning design approach that leverages perspective-taking to help students learn about complex systems. We define perspective-taking as projecting one's identity onto external entities (both animate and inanimate) in an effort to predict and anticipate events based on ecological cues, to automatically sense the…
Descriptors: Perspective Taking, Instructional Design, Learning Processes, Systems Approach
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Kimmerle, Joachim; Moskaliuk, Johannes; Oeberst, Aileen; Cress, Ulrike – Educational Psychologist, 2015
Social media are increasingly being used for educational purposes. The first part of this article briefly reviews literature that reports on educational applications of social media tools. The second part discusses theories that may provide a basis for analyzing the processes that are relevant for individual learning and collective knowledge…
Descriptors: Learning Processes, Social Systems, Social Networks, Instructional Design
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Nair, Uday – E-Learning and Digital Media, 2015
There are two sides to a coin when it comes to implementing technology at universities; on one side, there is the university using technologies via the virtual learning environment that seems to be outdated with the digital needs of the students, and on the other side, while implementing technology at the university learning environment the focus…
Descriptors: Educational Environment, Individualized Programs, Technology Uses in Education, Technology Integration
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Barney, Lee S.; Maughan, Bryan D. – Complicity: An International Journal of Complexity and Education, 2015
Students learn best when teachers get out of the way. Unfortunately, university classrooms continue to be intensely teacher-centric, are driven by the teacher's agenda and calendar, and embrace simple models rather than complex alternatives. These simple types of learning environments frustrate students' development of the risk-­taking and choice…
Descriptors: College Faculty, Teaching Methods, Learning Processes, Risk
Danish, Joshua Adam – ProQuest LLC, 2009
Representations such as drawings, graphs, and computer simulations, are central to learning and doing science. Furthermore, ongoing success in science learning requires students to build on the representations and associated practices that they are presumed to have learned throughout their schooling career. Without these practices, students have…
Descriptors: Class Activities, Learning Activities, Interviews, Scientific Concepts
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Coldeway, Dan O. – American Journal of Distance Education, 1987
Describes a model of instructional theory relevant to individualized distance education that is based on Keller's Personalized System of Instruction (PSI), behavior analysis, and the instructional systems development model (ISD). Systems theory is emphasized, and ISD and behavior analysis are discussed as cybernetic processes. (LRW)
Descriptors: Cybernetics, Distance Education, Individualized Instruction, Instructional Design
Kember, David; Murphy, David – Educational Technology, 1990
Discusses limitations of current instructional design theory and suggests new approaches that should be emphasized. Constructivist theories of learning in cognitive psychology are described, research into student learning is reviewed, and the systems approach is discussed in conjunction with the use of objectives. (47 references) (LRW)
Descriptors: Behavioral Objectives, Cognitive Psychology, Educational Theories, Educational Trends
Brown, John Seely; Duguid, Paul – Educational Technology, 1993
Discusses situated learning in the workplace and in the classroom. Topics addressed include operationalization versus legitimization of educational theories; instruction versus learning; explicit versus implicit instruction and knowledge; individual versus social context; systems narrowly construed versus systems broadly construed; and legitimate…
Descriptors: Educational Technology, Educational Theories, Experiential Learning, Instructional Design
Merrill, M. David; And Others – Educational Technology, 1990
Discusses the relationship of constructivism with instructional design theory. Topics discussed include instructional systems development; objectives; learning versus instruction; deep learning versus surface learning; situated learning versus formal instruction; adaptive learning; and the role of interactive educational technology in the design…
Descriptors: Educational Environment, Educational Objectives, Educational Technology, Educational Theories
Hoffman, Cynthia K.; Medsker, Karen L. – Journal of Instructional Development, 1983
Discusses rationale for distinguishing between task analysis and instructional analysis, contributions they make to instructional design, and why they are dependent on each other. Major functions in the instructional analysis process are described, examples are provided, and benefits of using this approach to achieve effective and efficient…
Descriptors: Cognitive Mapping, Evaluation Methods, Flow Charts, Graphs
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