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Showing 1 to 15 of 90 results Save | Export
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Roee Peretz; Natali Levi-Soskin; Dov Dori; Yehudit Judy Dori – IEEE Transactions on Education, 2024
Contribution: Model-based learning improves systems thinking (ST) based on students' prior knowledge and gender. Relations were found between textual, visual, and mixed question types and student achievements. Background: ST is essential to judicious decision-making and problem-solving. Undergraduate students can be taught to apply better ST, and…
Descriptors: Models, Engineering Education, Thinking Skills, Systems Approach
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Shin, Namsoo; Bowers, Jonathan; Roderick, Steve; McIntyre, Cynthia; Stephens, A. Lynn; Eidin, Emil; Krajcik, Joseph; Damelin, Daniel – Instructional Science: An International Journal of the Learning Sciences, 2022
We face complex global issues such as climate change that challenge our ability as humans to manage them. Models have been used as a pivotal science and engineering tool to investigate, represent, explain, and predict phenomena or solve problems that involve multi-faceted systems across many fields. To fully explain complex phenomena or solve…
Descriptors: Systems Approach, Thinking Skills, Computation, Models
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Bowers, Jonathan; Eidin, Emanuel; Damelin, Daniel; McIntyre, Cynthia – Science Teacher, 2022
The COVID-19 crisis has demonstrated the importance of being able to understand complex computational models for everyday life. To make sense of the evolving predictive models of the COVID-19 pandemic, global citizens need to have a firm grasp of both systems thinking (ST) and computational thinking (CT). ST is the ability to understand a problem…
Descriptors: Computation, Thinking Skills, Models, Systems Approach
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Gilissen, Melde G. R.; Knippels, Marie-Christine P. J.; van Joolingen, Wouter R. – CBE - Life Sciences Education, 2021
The main aim of this study is to teach students to take a systems perspective in understanding complex biological problems. Two lessons were designed and tested in two secondary classes (15- to 16-year-old students), using a lesson study approach. Three students from each class were observed more closely when visualizing and reasoning about two…
Descriptors: Difficulty Level, Scientific Concepts, Concept Formation, Systems Approach
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Nuhoglu, Hasret – Participatory Educational Research, 2020
The main goal of this research is to study the effect of modelling with system dynamics on learning. Specifically, this research studies if using inductive or deductive learning methods applied during modelling with system dynamics has any effect on problem solving skills of students. This research has three other goals: Firstly, the successful…
Descriptors: Logical Thinking, Teaching Methods, Science Education, Conservation (Environment)
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Avsec, Stanislav; Sajdera, Jolanta – International Journal of Technology and Design Education, 2019
Engineering thinking enhances real-world learning; it emphasises system thinking, problem finding and creative problem solving as well as visualising, improving, and adapting products and processes. Several studies have investigated how pre-service preschool teachers acquire their knowledge of technology and engineering; however, a clear…
Descriptors: Preschool Teachers, Thinking Skills, Systems Approach, Problem Solving
Alibali, Martha W.; Brown, Sarah A.; Menendez, David – Grantee Submission, 2019
Learning, development, and response to instruction often involve changes in the strategies that learners use to solve problems. In this chapter, our focus is on mathematical problem solving in both children and adults. We offer a selective review of research on three classes of factors that may influence processes of strategy change in…
Descriptors: Learning Strategies, Problem Solving, Mathematics Skills, Mathematics Instruction
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Adams, Julie; Duncan Grand, DeAnna – Learning Policy Institute, 2019
Historically, deep learning opportunities have occurred in schools attended by this country's most advantaged students, and there have been few successful efforts to systemically create the structures and policies necessary to ensure every student has access to this type of learning. The New Tech Network, a network of more than 200 elementary,…
Descriptors: Elementary Secondary Education, Student Projects, Public Schools, Models
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Langdon, Danny G. – Performance Improvement Quarterly, 2012
Many, if not most, of my colleagues believe that human performance technology (HPT) can never become a science; they do not even believe that it should be. I cannot come to that conclusion. If not a full-fledged science, then we should strive for at least a soft science that is more consistent and accepted in business than is certainly the case…
Descriptors: Performance Technology, Problem Solving, Improvement Programs, Access to Information
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Brethower, Dale M. – Performance Improvement Quarterly, 2012
The future of human performance technology (HPT) will be bright or dismal depending on how well HPT practitioners focus on careful and practical answers to three pivotal questions: What is good practice in human performance technology? What are the differences between good practice and bad? What are the connections between good research and…
Descriptors: Performance Technology, Models, Problem Solving, Systems Approach
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Flowers, Jim – Journal of Technology Education, 2010
As with any field, technology education and its close relatives have numerous strengths and weaknesses. One of these weaknesses has too long been overlooked, and it is the subject of this article. One might think of technology education as empowering students, divergently fostering their own creativity. An abundance of design briefs shows that…
Descriptors: Technology Education, Opinions, Literature Reviews, Descriptive Linguistics
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Lee, Chwee Beng – Computers & Education, 2010
This study examines the interactions between problem solving and conceptual change in an elementary science class where students build system dynamic models as a form of problem representations. Through mostly qualitative findings, we illustrate the interplay of three emerging intervening conditions (epistemological belief, structural knowledge…
Descriptors: Elementary School Science, Learning Strategies, Problem Solving, Systems Approach
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Georgakopoulos, Alexia; Hawkins, Steven T. – Campus-Wide Information Systems, 2013
Purpose: This study aims to present Dramatic Problem Solving Facilitation Model (DPSFM) and Interactive Management (IM) as innovative alternative dispute resolution approaches that incorporate communication technologies in recording and analyzing data. DPSFM utilizes performance-based actions with facilitation methods to help participants design…
Descriptors: Computer Mediated Communication, Information Technology, Computer Uses in Education, Computer Software
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Wayne, David – Performance Improvement, 2008
Grounded in the work of W. Edwards Deming, this article describes the basics of systems thinking, viewing a business as a system, and contrasts improving a system with solving a problem. The article uses the human body as a metaphor to describe the various aspects of viewing a business as a system at the concept level and maps the Deming cycle,…
Descriptors: Organizational Effectiveness, Figurative Language, Human Body, Problem Solving
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Hayden, Nancy J.; Rizzo, Donna M.; Dewoolkar, Mandar M.; Neumann, Maureen D.; Lathem, Sandra; Sadek, Adel – Advances in Engineering Education, 2011
This paper presents a brief overview of the changes made during our department level reform (DLR) process (Grant Title: "A Systems Approach for Civil and Environmental Engineering Education: Integrating Systems Thinking, Inquiry-Based Learning and Catamount Community Service-Learning Projects") and some of the effects of these changes on…
Descriptors: Systems Approach, Engineering Education, Civil Engineering, Environmental Education
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