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Supanun Pimdee; Thapanee Seechaliao – Journal of Education and Learning, 2025
The research objectives were to 1) study the current conditions, problems, and good practices regarding teaching and learning 2) develop a blended instructional model using problem-based learning with graphic organizers to enhance systems thinking skills in computational science for students in lower secondary school and 3) study the results of…
Descriptors: Blended Learning, Instructional Materials, Secondary School Students, Grade 7
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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
Monica L. De Tuya – ProQuest LLC, 2023
The aims of university System Dynamics (SD) programs include the mastery of systems thinking skills, modeling skills, and/or application to solving real-world, dynamic, complex problems. Existing research has articulated learning sequences of what learners should know and be able to do, and when. It is called the competence development framework…
Descriptors: Instructional Design, Behavioral Objectives, College Students, Student Evaluation
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Alisha R. Szozda; Zahra Lalani; Samira Behroozi; Peter G. Mahaffy; Alison B. Flynn – Journal of Chemical Education, 2024
Researchers and educators have been exploring systems thinking (ST) in chemistry education to better equip citizens for 21st century challenges; however, little is known about students' perspectives and experiences. In this study, we investigated students' perspectives of ST and their experiences with ST activities. We designed and implemented a…
Descriptors: Systems Approach, Thinking Skills, Chemistry, Science Education
Jennifer Elizabeth Johnson – ProQuest LLC, 2021
The focus on systems has been a part of science education for many decades, and more recently there has been a new emphasis on teaching with a "systems thinking" approach. Integrating systems thinking methods involves enhancing a student's understanding the complexity of systems, particularly the interactions that occur within and…
Descriptors: Environmental Education, Systems Approach, Thinking Skills, Undergraduate Study
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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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Denning, Peter J.; Tedre, Matti – Informatics in Education, 2021
Over its short disciplinary history, computing has seen a stunning number of descriptions of the field's characteristic ways of thinking and practicing, under a large number of different labels. One of the more recent variants, notably in the context of K-12 education, is "computational thinking", which became popular in the early 2000s,…
Descriptors: Thinking Skills, Computation, Computer Science, Mathematics
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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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Guevara, Marlenny; Rojas Ospina, Tatiana; van Geert, Paul – Cogent Education, 2020
Transfer is not static but a dynamic process of learning. In this article, the concept of transfer and the implications of its study are reconsidered from the theoretical basis of the complex dynamic system approach. We describe "transfer" as an emergent process that implies not a copy of knowledge applied to a new situation, but a new…
Descriptors: Transfer of Training, Systems Approach, Problem Solving, Preschool Children
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Chen, Ya-Chun; Wilson, Kimberley; Lin, Huann-shyang – Chemistry Education Research and Practice, 2019
Systems thinking has been an educational priority for more than a decade, yet its related assessment and teaching strategies have been understudied in the chemistry education research community. Through the lens of systems thinking, this study explores how undergraduate students connect and translate their conceptual representations when they are…
Descriptors: College Science, Chemistry, Problem Solving, Systems Approach
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Elsawah, Sondoss; Ho, Allen Tim Luen; Ryan, Michael J. – INFORMS Transactions on Education, 2022
Systems thinking is recognized as an essential skill for understanding complex problem solving and decision making associated with many of the contemporary issues faced by individuals and communities. In this article, our goal is to contribute to the knowledge of curriculum and pedagogy of formal systems thinking teaching in higher education. We…
Descriptors: Systems Approach, Higher Education, Thinking Skills, Concept Formation
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Yang, Yisi; Zhang, Yan; Xiong, Xujie; Zhang, Wanju; Chen, Wen; Ge, Shiping – Journal of Chemical Education, 2021
Project-based learning (PJBL) is student-centered and teamwork educational activity that prepares students for the challenge of real-world problems. This kind of instructional method is highly recommended by the Accreditation Board for Engineering and Technology (ABET).This paper describes an authentic project that focuses on the preparation of…
Descriptors: Student Projects, Active Learning, Science Instruction, Learning Activities
Yuzhen Luo – ProQuest LLC, 2020
Systems thinking is the ability to see the big picture and the related elements when designing, and how these relationships form the big picture. In engineering design, systems thinking is valuable to both industry, as well as engineering education. As such, it creates opportunities for researchers to better understand systems thinking of both…
Descriptors: Engineering Education, Thinking Skills, Systems Approach, College Freshmen
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Annelin, Alice; Boström, Gert-Olof – International Journal of Sustainability in Higher Education, 2023
Purpose: The purpose of this paper is to review and provide propositions about survey assessment tools of the key sustainability competencies (KSCs) of education for sustainability. UNESCO points out how education plays an important role in transforming societies towards a sustainable future and achieving the United Nations' sustainable…
Descriptors: Sustainability, Environmental Education, Objectives, Social Change
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